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HomeMy WebLinkAbout2022-091 Council Resolution CITY OF LINO LAKES RESOLUTION NO. 22-91 RESOLUTION AUTHORIZING PREPARATION OF PLANS AND SPECIFICATIONS WATER TREATMENT PLANT NO. 1 WHEREAS,the City Council finds that while the City's water supply continues to meet all Safe Drinking Water Act standards,tests identified manganese levels above Minnesota Department of Health(MDH)guidelines; and WHEREAS, a feasibility study and pilot study ordered by the City Council provided recommended treatment options to remove manganese and iron in the City water supply; and WHEREAS,the City Council finds that it would be in the best interest of the City to proceed with the preparation of plans and specifications for the Water Treatment Plant No. 1: WHEREAS,WSB,the City Engineer, has submitted a proposal to prepare plans and specifications. NOW, THEREFORE BE IT RESOLVED by the City Council of the City of Lino Lakes: 1. WSB and Associates, Inc., is hereby designated as the engineer for this improvement. The engineer shall prepare plans and specifications for the making of such improvement. 2. City staff is authorized to execute a professional services agreement with WSB and Associate, Inc., in the amount, not to exceed, $696,940.00 Adopted by the Council of the City of Lino Lakes this 22nd day of August, 2022. The motion for the adoption of the foregoing resolution was introduced by Councilmember Lyden and was duly seconded by Council Member Ruhland and upon vote being taken thereon, the following voted in favor thereof: Lyden, Ruhland, Rafferty The following voted against same: None (Absent- Stoesz, Cavegn) Ro Rafferty, Mayor ATTEST: a ne Bartell, Ci Cler CITY COUNCIL AGENDA ITEM 5A STAFF ORIGINATOR: Michael Grochala, Community Development Director C. C. MEETING DATE: August 22, 2022 TOPIC: Consider Resolution 22-91, Authorize the Preparation of Plans and Specs, Water Treatment Plant No. 1 VOTE REQUIRED: 3/5 INTRODUCTION Staff is requesting Council authorization to prepare plans and specifications for the construction of a Water Treatment Plant No. 1. BACKGROUND In 2019,the Minnesota Department of Health tested the City's manganese levels in each of the City's wells as part of the EPA Unregulated Contaminant Monitoring Rule 4 (UCMR4). The water quality testing data from MDH indicated that five of the City's six wells exceed the maximum recommended manganese level for infants, and three of the wells exceeds the maximum recommend level for adults and children. Since that time the City has completed a Water Treatment Plant feasibility study and a Pilot Study to address treatment options and identify a preferred plant design. The studies recommended the construction of a conventional gravity filtration system using biological filtration with an initial treatment capacity of 6,000 gallons per minute (gpm) is recommended. As discussed at the August 1, 2022 City Council Work Session, WSB and Associates have submitted a proposal for Design, Bidding and Construction for the amount of$1,447,730 (6.89% of preliminary estimated construction cost) as follows: Design: $696,940 Bidding: $19,021 Construction Admin, Const. Observation and Plant Startup: $731,769 Total 1.447.730 The design fee includes engineering, architectural, mechanical and electric design on the plant and treatment system as well as design of new raw water mains to connect wells, 1, 3, 5, 6 to the site. Staff is proposing authorization to complete plans and specifications at this time. The bidding, construction admin and plant startup components came be authorized at a future date, should the City move forward with construction. Funding for the design will come from the City's Trunk Unit and Area Fund. Staff has submitted application to be included on the State's Public Facility Authority(PFA) Intended Use Plan that provides low interest loans for eligible public infrastructure projects. Additionally, the City may be eligible for grant funding in the $1 to $2 million dollar range from PFA administered federal funding for emerging contaminants (manganese). Staff will continue to pursue all options including seeking state bonding funds in next year's legislative session. The project schedule: Authorize Preparation of Plans and Specifications August 22,2022 Order Improvement, Approve Plans and Specs,Authorize Ad for Bids March, 2023 City Opens Bids April, 2023 City Council Awards Contract May,2023 Construction Begins June 2023 Final Completion October,2024 White Bear Lake Implications As noted at the August 1,2022 work session there has been discussion of municipalities shifting from ground water to surface water use for domestic water supply. Staff has had recent discussions with North Oaks Development Co. regarding possible extension of Saint Paul Regional Water Services(SPRWS)to serve North Oaks and Lino Lakes. SPRWS draws most of their water from the Mississippi River and provides treated water to several metro communities. A 2014 study,prepared by Metropolitan Council, examined the potential extension of SPRWS to serve north metro communities. The 2014 estimate was approximately$600 million. While a smaller service area could substantially reduce costs, surface water treatment plants can be 2 to 3 times as expensive as a traditional ground water treatment plant. While conversations are ongoing there are no plans,funding or timeline for development of a regional system. The lack of any certainty regarding a project of this scope and complexity makes it difficult to rely on it as an alternative to addressing our existing water treatment needs. However, staff is proposing,with assistance from WSB,to incorporate further discussions with SPRWS as an initial component of our design process. Any potential findings would be brought back to the council for discussion. RECOMMENDATION Staff is recommending approval of Resolution No. 22-91,Authorizing the Preparation of Plans and Specifications, Water Treatment Plant No. 1. ATTACHMENTS l. Resolution No. 22-91 2. WSB and Associates Proposal CITY OF LINO LAKES RESOLUTION NO. 22-91 RESOLUTION AUTHORIZING PREPARATION OF PLANS AND SPECIFICATIONS WATER TREATMENT PLANT NO. 1 WHEREAS,the City Council finds that while the City's water supply continues to meet all Safe Drinking Water Act standards,tests identified manganese levels above Minnesota Department of Health(MDH)guidelines;and WHEREAS, a feasibility study and pilot study ordered by the City Council provided recommended treatment options to remove manganese and iron in the City water supply; and WHEREAS,the City Council finds that it would be in the best interest of the City to proceed with the preparation of plans and specifications for the Water Treatment Plant No. 1: WHEREAS,WSB,the City Engineer, has submitted a proposal to prepare plans and specifications. NOW, THEREFORE BE IT RESOLVED by the City Council of the City of Lino Lakes: 1. WSB and Associates, Inc., is hereby designated as the engineer for this improvement. The engineer shall prepare plans and specifications for the making of such improvement. 2. City staff is authorized to execute a professional services agreement with WSB and Associate, Inc., in the amount, not to exceed, $696,940.00 Adopted by the Council of the City of Lino Lakes this 22°d day of August, 2022. The motion for the adoption of the foregoing resolution was introduced by Council Member and was duly seconded by Council Member and upon vote being taken thereon,the following voted in favor thereof: The following voted against same: Rob Rafferty, Mayor ATTEST: Julianne Bartell, City Clerk A PROPOSAL FOR PROFESSIONAL ENGINEERING SERVICES FOR Design, Bidding, and Construction Administration for a Water Treatment Plant FOR THE CITY OF LINO LAKES v, SIII u 4M, 4 A PROPOSAL FOR PROFESSIONAL ENGINEERING SERVICES FOR Design, Bidding, and Construction Administration for a Water Treatment Plant FOR THE CITY OF LINO LAKES July 27th,2022 Honorable Mayor and Council Members WS b City of Lino Lakes 600 Town Center Parkway Lino Lakes, MN 55014 Re: Design, Bidding,and Construction Services for a Water Treatment Plant Dear Honorable Mayor and Council Members, WSB is pleased to submit this proposal to provide professional engineering services to provide design, bidding,and construction services for the city's proposed Water Treatment Plant.We have chosen this z team intentionally based on their collective experience and expertise.We are confident that this team will W N provide effective communication and innovative solutions which will deliver the successful completion of this project.The WSB Team will provide the following benefits to the City: o Trusted&Experienced Team:WSB has successfully completed numerous advanced water treatment plant projects throughout the Midwest.Our team has provided project management,design, bidding, and v construction services for 15 water treatment plants constructed in the Metropolitan area and 38 water co treatment plants in MN,WI, IA,and ND. In addition, our project manager has been involved in the design, bidding,and construction of eight municipal water treatment plants in Minnesota over 6,000 gpm in capacity in the past 15 years, more than any other project manager or engineering firm in Minnesota.The o city will receive the most experienced team for this major infrastructure project. 0 co Fui � : -1 Obtaining funding for this major infrastructure project will be one of the most critical factors when selecting the right consultant for the city.WSB has applied for funding and administering f7 ° grants and loans from the Public Facilities Authority,the Minnesota State Bonding Bill,and federal w earmarks.The city will greatly benefit from our extensive funding experience as we lead the process and leave no stone unturned to pursue funding for your project. v Community Involvement&Clear Communicatior The city's proposed water treatment plant will likely be Ln z one the most important projects to be planned and constructed in the City of Lino Lakes. This project will require a firm that is highly experienced in community involvement to keep residents and business owners u� up to date throughout the project.We excel in community involvement and have the experience needed 0 a to effectively communicate with the public and provide concepts and ideas that will not only be accepted, z but also provide a sense of ownership and pride for the community. We will involve the community using a z 2 mix of digital and traditional engagement methods such as project websites,visualizations, meetings,and printed materials. 0 0 W Thank you for the opportunity to provide our qualifications to the City of Lino Lakes for this project. If you ~ have any questions, please contact Greg Johnson at 612.209.0140,or gjohnson@wsbeng.com. Sincerely,WSB LU a z Greg Johnson, PE I Director of Water and Wastewater/Design Project Manager and Principal-in-Charge W x 0 TABLE OF CONTENTS f O U O Z w m m 3 Firm Overview...................................................1 0 0 Project Understanding & Approach................2 M Project Personnel 9 X " Relative Experience, Qualifications, o & References..................................................25 O m Project Schedule 32 M t Proposed Fees...............................................33 J LCAGUEo w p�wClnEsnssorn L � EADS SS :ato Appendix........................................................36 ..- GAUE[tSHIP COUNCIL cp V N LO O a w Z Z O O co W H O O w Z w X 0 n Firm Overview o; BFV GAC L WWI Apr �4 R Q a Forge ahead. WSB is a design and consulting firm specializing in engineering, community planning, environmental, and construction services. Together, our staff improves the way people engage with communities, transportation, infrastructure, energy and our environment. We offer services that seamlessly integrate planning, design and implementation. We share a vision to connect your dreams for tomorrow to the needs of today— the future is ours for the making. 600+ 1 30+ 15 5 STAFF SERVICE AREAS OFFICES STATES Alternative Project Delivery j Biogas Bridges&Structures j City Engineering 1 Community Planning 1 Constructability Review 1 Construction Materials Testing&Special Inspection 1 Contractor Modeling ; Drinking Water I Economic Development Environmental Compliance 1 Geohazard Risk Management 1 Geospatial I Geotechnical Engineering GIS Services 1 Grants&Funding Health&Safety Compliance Intelligent Transportation Systems ': Investigation&Remediation j Land Development I Landscape Architecture ":. Managed Services Natural Resources 1 Pavement Management Pipeline I Project Management&Construction Administration I Public Engagement Public Works Management 1 Right of Way 1 Roadway Design I Smart Cities 1 Solar 1 Survey ! Technology Solutions I Traffic Engineering Transit Planning ' Transportation Planning { Urban Design I Vibration Monitoring 1 Visualizations 1 Water Resources Water Reuse 1 Wind A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Firm Overview 1 y , Project Understanding & Approach Understanding The City of Lino Lakes is planning to construct a new 8.6 million gallons per day(MGD) iron and manganese Water Treatment Plant(WTP)to treat Wells 1,3,5,6 and future wells following a traditional design-bid-build method.All four wells exceed the Minnesota Department of Health's recommended health risk limit(100 ppb)for manganese for infants. In 2020,the city prepared a Feasibility Study for the purpose of selecting the preferred site, developing the preliminary design concepts for the WTP including the selection of treatment processes,developing floor and site plans,and preparing preliminary cost estimates. In 2021,the city completed a biological filtration water treatment pilot study that successfully treated the iron and manganese in the City's highest producing manganese well without feeding chemicals The city has requested this proposal from WSB to provide professional engineering services to complete the final design,to prepare plans and specifications,to assist with bidding the plans and specifications,and to administer and observe the construction of the proposed WTP. Water Quality and Treatment The City of Lino Lakes proposed water treatment plant of replacement parts and materials),the discharge of will need to provide manganese free water in addition the waste products,and the ability of the plant to be to removing other secondary contaminants.The design modified in the future.This will be a comprehensive capacity of the plant should be high enough to meet review during the preliminary design phase and the city's projected maximum day demands or be recommendation of the best treatment facility to meet designed to be expanded in the future.The plant should the current and future needs of the city. be designed to treat iron and manganese biologically with aeration and gravity filtration in addition to feeding The manganese and iron in the city's well water chlorine for disinfection,and fluoride for dental care. could be treated without chlorine and potassium permanganate with biological filtration as successfully The analysis of the water treatment plant will include,but piloted. In addition,the disinfection byproducts(Total not be limited to,estimated construction costs,flexibility Trihalomethanes and Total Haloacetic Acids)that are of the system to treat additional elements as drinking formed in the city's water when chlorine reacts with the water standards change,water chemistry changes natural organic matter could be totally eliminated with or demand necessitates,the ability of the system to biological filtration. effectively and efficiently remove manganese,iron,and other contaminants from the water supply,ease of the operation of the system(manpower needed,availability A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Understanding&Approach 12 Biological filtration is commonly practiced in the United The ability for the plant to operate in parallel(one States and Europe and is endorsed by the Minnesota half of the facility under repair or maintenance while Department of Health(MDH)as an efficient and effective the other half maintains operation):The plant should method for treating these(and other)contaminants. be designed with individual filter cells that can be The cities of Minneapolis,St. Paul,and St.Cloud are removed from service and a split clearwell tank(wall now utilizing biological filtration at their water treatment down the middle)and high service pumps to meet this plants.The benefits of biological filtration include higher requirement. filtration rates, longer filter runs(reduces backwash Architectural features in the facility design:Office supply and wastewater volumes),savings in chemical space/control room,access for chemical delivery, costs,and reduction in disinfection byproducts.The parking for staff and visitors, laboratory facilities, design of a conventional gravity filtration process landscaping around the site,storage room(for with detention and aeration can easily accommodate meters, meter parts,compressor parts,water sample biological filtration. supplies, and water plant parts),and a garage for city maintenance vehicles and/or other large pieces of OTHER DESIGN CONSIDERATIONS WILL equipment. INCLUDE THE FOLLOWING: New 24-inch and 20-inch diameter raw watermains Design for the proper size of clearwell to store treated will be constructed on Birch Street to convey raw water and backwash tanks including provisions water from Wells 1,3,5,and 6 to the new water for water overflow and discharge from backwash treatment plant site: New transmission mains will also tanks:The proposed water treatment facility site will be constructed to pump the treated water from a new require an efficient footprint to save space and reduce finished water clearwell into the city's water distribution unnecessary costs. system.To properly size the high service pumps, WSB If requested by the city,we will study an innovative will use the city's existing water distribution system design for this site that could significantly reduce the model to model the expected discharge pressures in building footprint.The plant could be designed with a the distribution system with the pumps operating at clearwell that is located directly below the gravity filters minimum to maximum capacity. which would significantly reduce the footprint of the facility and the cost of the plant structure. Funding Obtaining funding for this large infrastructure project will be one of the most important work tasks for this project.WSB has evaluated and applied for funding from various funding sources such as federal earmarks,the bonding bill, and the PFA Drinking Water Revolving Fund(DWRF).Our team has extensive experience in preparing and submitting bonding bill and federal earmarks applications for proposed water treatment facilities.WSB has experience administering PFA funded projects through the Drinking Water Revolving Fund Program from previous water treatment facility projects. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Understanding&Approach 13 Approach WSB will establish goals for water quality and provide a final design plan that evaluates the available options and recommendations for the best treatment processes for the City's proposed Water Treatment Plant with accurate financial information. Throughout this final design phase,city staff involvement will be crucial.This project will lead to a significant water treatment plant project that will affect water costs and service to utility customers for the next 40 to 50 years and beyond.WSB is sensitive to the significance of this project and is prepared to help the City involve the community and stakeholders to the appropriate extent in the planning process. APPROACH AT-A-GLANCE Project Planning 11111L, Define . constraints Analyze source water Project Management Project Planning and Management WSB's St. Paul office will be the focal point for A formal work plan will be prepared during project initiation. completing the work of this project.Greg Johnson,out in order to develop that work plan,key team members will of the St. Paul office,will provide project management complete an initial review of available information obtained leadership. His 28 years of project management and from the City of Lino Lakes and hold a meeting with city extensive water treatment plant design experience, staff to review and refine project concerns,objectives, provides a sound foundation for managing project and requirements. From this discussion,an approach activities and assuring proper communication will be finalized, including required deliverables throughout the course of the study. Greg has a solid and milestones.Our approach focuses on specific understanding of the city's water system since working deliverables, which will help you understand what to on multiple studies and water system projects for the expect and monitor the project progress. It will also City since 2015. clearly define individual team member responsibilities, including city staff who may be involved in the project. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Understanding&Approach 4 r, r Define . Constraints Analyze Source Water The purpose of this task is not to reconstruct what All existing water quality data for Wells 1,3,5,and 6 has already been accomplished, but to establish will be reviewed with respect to primary and secondary a working foundation for the study as well as drinking water standards as well as contaminants and establish the key issues to be addressed, potential emerging contaminants. Our team will then develop constraints, and alternatives to be investigated. a comprehensive treatment plan that addresses The water treatment plant design alternatives all identified contaminants,ensures regulatory will be constrained by a number of factors.As compliance,and produces high quality water for the alternative solutions are evaluated, it will be city's customers.WSB will also look ahead and evaluate important to consider potential implications of a the water quality parameters that will likely need to be dynamic regulatory environment. evaluated for both conventional and biological filtration. WSB will define constraints associated with existing Our team has experience coordinating,developing pilot regulations and possible future changes in both testing protocols,building pilot plants,and performing national and local level regulations by completing pilot studies related to iron, manganese,and ammonia in a Safe Drinking Water Act compliance audit. groundwater systems with our water treatment pilot plant Although preliminary indications show that the and trailer.We will utilize the pilot study report completed proposed water treatment regulations should have by WSB as a design basis for the proposed Water minimal impact on the design of the proposed Treatment Plant. water treatment facility and on the city's operations, Before preparing the final design plan,the source water alternative scenarios should be considered on how regulations will evolve in the near future. will be further analyzed.This analysis will include the following elements: Understanding and meeting your requirements is the foundation for WSB's quality project delivery Analyze Source Water Chemistry philosophy. Our primary goals are to clearly define Identify known primary contaminants your requirements and expectations in terms of deliverables, project schedule and budget,and to Identify known secondary contaminants manage the project to meet these requirements. • Identify emerging contaminants(based on anticipated life of facility) Summarize Results A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Understanding&Approach 5 Special Considerations NEIGHBORING PROPERTY IMPACTS AESTHETIC CONSTRUCTION MATERIALS The feasibility study report completed by WSB explored The final design will include aesthetic treatments and potential impacts of the water treatment facility on construction materials based on input received from neighboring properties due to noise,odors,operating City Staff and the City Council.WSB uses the one of hours,traffic,and other identified sources of impact, the most advanced virtual rendering software in the and recommend a process for mitigating any identified world to provide renderings that appear extremely impacts during the final design process. realistic and simulate light and shadows during various times of the day.We will also provide 3D to allow the To keep the public informed,WSB's nationally recognized viewer to pan around the facility 360 degrees to view visualization expert will create a high definition the proposed facility from any orientation.We have visualization that starts at an aerial view of the City of included example images from a recent water treatment Lino Lakes.The location of the water treatment plant facility design that were generated from this software in will then be highlighted along with the location of the the appendix. existing and recommended water distribution system improvements.This overall view will then change to a view of the water treatment plant in its location,allowing EDUCATIONAL TOUR ACCOMMODATIONS for a review of the facility. From this vantage point, a review of the design aesthetic alternatives will be The final design will contemplate the construction of shown.This real time visualization will allow the viewer(s) additional improvements required to accommodate to either explore the new water treatment plant in a educational tours of the WTP based on future direction standard visualization setting. received from the City Council after considering the benefits of providing educational tours versus the The recently constructed Chanhassen West Water associated increase in project costs. Treatment Plant was constructed in the middle of a residential neighborhood.We know firsthand how critical it will be to design a water treatment facility ESTIMATED COSTS that properly addresses noise, odors,operating hours, The final design will include updated estimated and traffic.This plant include specially designed sound construction and operating costs for the groundwater attenuation devices for the emergency generator and treatment facility over the anticipated life of the facility. the ventilation vans inside the plant. Because of these Estimated costs will assume industry standard costs special design features, even the closest neighbors for a water treatment facility.WSB has specialized cost cannot hear any sound from the plant during normal estimating staff with contractor experience that will plant operations.This plant also includes special safety help prepare accurate construction cost estimates for features and technology for the storage of 1-ton chlorine this project. gas cylinders. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Understanding&Approach 16 REVIEW OF EXISTING SITES AND The city's existing wells produce high concentrations INFRASTRUCTURE of manganese.The manganese concentrations The WSB team will visit the proposed water treatment range from 0.152 to 0.383 mg/L in the City's highest plant site and review the existing as-built drawings, manganese producing well.The highest manganese easements, and existing infrastructure in extensive concentrations are over seven times the recommended detail. Potential contaminants and other barriers that secondary standard (0.05 mg/L)for manganese. More may restrict or affect the layout of the plant at the site importantly, all four of Wells 1, 3,5,and 6 exceed MDH's will be evaluated up front during this analysis. recommended guidance level of 100 micrograms per liter of manganese for infants. Other factors such as ease of chemical deliveries, access for maintenance trucks,security,stormwater The iron, manganese,and ammonia in the City's well retention, proximity to water and sanitary sewer utilities, Water could be treated without chlorine and potassium and proximity to three phase-480 volt electrical power permanganate with biological filtration. Biological will be evaluated during the preliminary design phase. filtration is commonly practiced in the United States and Europe and is endorsed by the Minnesota Department of Health (MDH)as an efficient and effective method for REVIEW OF TREATMENT TECHNOLOGIES treating these(and other)contaminants. AND TOURS OF EXISTING WATER TREATMENT FACILITIES The benefits of biological filtration include higher Potential treatment methods and technologies to filtration rates, longer filter runs(reduces backwash treat the city's existing and future wells will be studied supply and wastewater volumes),savings in chemical in detail.The WSB team will analyze the treatment costs,and reduction in disinfection byproducts.The technologies identified in the feasibility study report design of a conventional gravity filtration process and other technologies to make certain that the city with detention and aeration can easily accommodate receives the most current,advanced,and cost effective biological filtration. treatment technology available. If requested by the city,WSB will coordinate and attend additional tours of existing water treatment facilities that utilize each of the treatment methods being evaluated so that city staff have a clear understanding of the treatment technologies and options that are available for the Water Treatment Plant.The analysis will include, but not be limited to, initial construction costs, long term operational costs,flexibility of each system to treat additional elements as standards change,water chemistry changes or demand necessitates,the ability of each system to effectively and efficiently remove iron, manganese and other contaminants from the water supply, ease of operation of each system(manpower needed, availability of replacement parts and materials, etc.),the discharge of the waste product,and ability of the plant to expand or be modified in the future.This will be a comprehensive review and recommendation on the"best" plant to meet the current and future needs of the city. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Understanding&Approach 7 WSB recently presented an abstract at the AWWA International Symposium on Biological Treatment in Austin,Texas. The St. Martin biological filtration plant designed by WSB is the first fully biological filtration plant in Minnesota. This plant successfully removes high concentrations of iron, manganese, and ammonia while saving the City chemical and operational costs. WSB owns and operates an advanced biological filtration pilot plant that was recently used to successfully pilot biological filtration for a central Minnesota community of about 8,000 people,and another community of about 13,000 people in southern Minnesota. In addition, we recently piloted biological filtration to remove high concentrations of nitrate for a Twin Cities community and achieved 100 percent removal of nitrate in their raw water. The Environmental Protection Agency(EPA)is currently preparing a chapter on biological filtration for an upcoming AWWA manual and will be using the results of these pilot studies in this manual because of the excellent results achieved. The filter run times achieved with biological filtration are sometimes over five times longer than the filter run times achieved at conventional water treatment plants which could save the city many millions of gallons of filter supply and backwash wastewater per year. We estimated that the City of Lino Lakes could potentially save approximately$1 million in chemical costs over the next 20 years if biological filtration is implemented for the Water Treatment Plant. SCOPE OF WORK, FINAL DESIGN SERVICES WSB will prepare final plans and specifications, administer the bid process,and administer the construction in accordance with the Project Understanding section of this proposal. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Understanding&Approach 8 Project Personnel City of Lino Lakes Greg Johnson,PE DESIGN PROJECT MANAGER/ PRINCIPAL-IN-CHARGE PROCESS DESIGN WATER PLANT OPERATIONS ARCHITECTURE Jon Christensen,PE Chris Petree, MN Class A Operator Thomas Stromsodt,AIA PROJECT ENGINEER ARCHITECT WATER TREATMENT PLANT OPERATIONS SPECIALIST Ray Theiler, PE I PROJECT ENGINEER ICIVIL SITEWORK ENGINEERING STRUCTURAL DESIGN Diane Hankee,PE Ursino Puga,PE Ashley Olson,PE(Design Tree) CIVIL SITEWORK ENGINEER PROJECT ENGINEER STRUCTURAL ENGINEER Kelsey Gelhar,PE Greg Glunz CIVIL SITEWORK ENGINEER SENIOR DESIGNER , ELECTRICAL DESIGN Aaron Meuller,PE(Design Tree) STORMWATER DESIGN GEOTECHNICAL DESIGN ELECTRICAL ENGINEER Jake Newhall,PE Mark Osborn, PE .. .. WATER REOURCES PROJECT GETECH ENGINEER • R C' O OBSERVATION� MANAGER MECHANICAL' Christensen,PE Henry Meeker,PE DESIGN WATER RESOURCES ENGINEER I „ CONS TRUCTION PROJECT MANAGER/OBSERVER Paul Quirin,PE(Design Tree) MECHANICAL HVAC/ PLUMBING ENGINEER aka ", A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Personnel 9 PROJECT MANAGER Greg is the Director of Water/Wastewater at WSB with over 28 years of water *` and wastewater engineering experience in project planning, design, and construction administration of water treatment facilities as well as with groundwater and surface water supplies, water storage structures, water distribution systems, wastewater treatment facilities, and lift stations. Greg is also a water and wastewater systems design engineer and serves as a Project Manager. Greg has served as the lead process design engineer and project manager for 11 major water treatment plants, multiple municipal and park wells, the first fully biological water treatment in Minnesota, the first advanced oxidation process (AOP) water treatment plant in Minnesota, and multiple water towers and wells in the Metropolitan Area. SERVICE GROUP: West Water Treatment Plant I City of Chanhassen, MN Water/Wastewater C_ T: CITY OF CHANHASSEN PROJECT DURATION: JUN 2016 - NOV 2018 REGISTRATION: Greg served as the project manager and lead process design engineer for the design Professional Engineer and construction of a nine million gallon per day water treatment plant. After WSB MN#26430 conducted multiple neighborhood meetings and received public input,the plant was WI#36036 designed with a prairie themed architecture and landscaping to fit into a residential IA #21765 neighborhood. Based on pilot plant testing and initial evaluations,the plant was ND#10078 designed with pressure aeration,detention,concrete gravity filters for treating iron, EDUCATION: manganese,and natural ammonia that exist in the city's west well field. The Minnesota MS Civil Engineering Section of APWA nominated this project for the National APWA Environment Award. University of Minnesota, 2002 Advanced Oxidation Process Water Treatment Plant I St. Anthony, MN CLIENT: ST. ANTHONY VILLAGE BS Civil Engineering, PROJECT DURATION: JUN 2015 - MAY 2018 University of Minnesota, Greg was the Project Manager and the Lead Process Engineer on this project.WSB 1994 provided professional engineering services to study,design,and provide construction services for a 3,500 gallon per minute(gpm)advanced oxidation process(AOP)water treatment plant to treat 1,4-Dioxane.This contaminant was detected in the groundwater aquifer that provides drinking water for the city's wells.Three UV units were installed inside a new masonry and precast concrete building constructed adjacent to the city's existing water treatment plant.The new building or WTP addition includes a chemical storage room for feeding hydrogen peroxide,an electrical room,and a piping gallery. The existing effluent piping from the existing greens and filters was routed into the new WTP addition, metered,and connected to the individual UV treatment units. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Personnel 10 Greg Johnson, PE - Project Experience (con't) WATER TREATMENT FACILITIES Well No.10-Hudson,WI Water Treatment Feasibility Study-Monticello,MN Well No.6 and Well No.7-Cambridge,MN (currently being prepared) Well Nos.12,2,and 4 Rehabilitation-Plymouth,MN PFOS Removal GAC WTP,St.Paul Park,MN Well Nos.5 and 6-Montgomery MN West Water Treatment Plant-Chanhassen,MN WATER DISTRIBUTION SYSTEM IMPROVEMENTS Advanced Oxidation Process Water Treatment Plant-St. Anthony Village,MN Section 34 Pressure Reducing Valve Station-Lake Elmo,MN Biological Filtration Water Treatment Plant-St.Martin,MN Cedarbridge Pressure Reducing Valve Station- Water Treatment Plant-Brooklyn Center,MN Burnsville, MN Lime Softening Water Treatment Plant Improvements- Crystal Lake Area Pressure Reducing Valve Station- Spencer,IA Burnsville,MN Surface Water Treatment Plant-Burnsville,MN Nicollet Reservoir Pressure Reducing Valve Station- Burnsville,MN 700 Horsepower High Service Pump and VFD-Burnsville,MN • South Coon Creek Drive Pressure Reducing Valve Station Lime Softening Water Treatment Plant Improvements -Andover,MN Webster City,IA Willow Creek Watermain Pressure Reducing Valve Station Membrane Softening Water Treatment Plant-Elmore,MN -Burnsville,MN Water Treatment Plant-New Germany,MN WASTEWATER TREATMENT FACILITIES & LIFT STATIONS Potassium Permanganate,Lime,and Soda Ash Feed System Improvements-Minneapolis,MN Mazeppa WWTP Facility Plan Water Treatment Plant Plate Settler Expansion-Andover,MN Lift Station No.5 Rehabilitation-Champlin,M Water Treatment Plant Improvements-Webster City,IA Sunset Hill Lift Station Improvements-Plymouth, MN Water Treatment Plant No.10-Hudson,WI Wastewater Treatment Improvements,Treasure Island East Water Treatment Plant-Chanhassen,MN Casino-Welch,MN Water Treatment Plant-Cambridge,MN Wastewater Treatment Plant Improvements-New Richland, MN Well No.2 Air Stripping System-Bayport,MN • Green Lake Wastewater Treatment Plant Biosolids East Water Treatment Plant-Chanhassen,MN Improvements-Kandiyohi County,MN Central and Zachary Water Treatment Plants-Plymouth,MN • Wastewater Treatment Plant Improvements-Lafayette,MN Water Treatment Plant No.16-Minnetonka,MN • Wastewater Treatment Plant Construction Observation- Water Treatment Plant No.8-Hudson,WI Prescott,WI Water Treatment Facility-Sauk Rapids,MN Green Lake WWTP Biosolids Improvements Study- Water Treatment Plant No.3-New Prague,MN Kandiyohi County,MN Water Treatment Facility-Waite Park,MN Wastewater Treatment Plant Facilities Plan,Treasure Island Casino-Isanti, MN WATER SUPPLY FACILITIES Casino Lift Station,Prairie Island Indian Community- Well No.42-Rochester Public Utilities,Rochester, MN Welch,MN Well No.5 Pump House Improvements-Rogers,MN Kingswood Farms North Lift Station and Forcemain Well House No.16-Rosemount,MN Improvements-Plymouth,MN Well No.9-Rogers,MN Ferndale North Lift Station and Forcemain Improvements- • Well Nos.6 and 7-Minnetrista,MN Plymouth,MN Well No.6-Northfield,MN Wayzata Central Middle School Lift Station-Wayzata, MN Well No.4 Pumphouse-Lake Elmo,MN Central Water Treatment Plant Stormwater Lift Station- Plymouth,MN Well No.9,Pump,Pitless Unit,and Controls-Andover,MN A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Personnel 11 CONSTRUCTION PROJECT mxmxosn/oeocnvcm Jon is a Professional Engineer with eight years of experience in water and wuomawuto, engineering including:water supply systems,sanitary sewer collection systems and water and wastewater treatment facilities. Prior to joining VVSB. ]on spent two years with a Al non-govern menta| organizations in Honduras designing and constructing electricity- free sustainable drinking water treatment plants. At NS8' he works with growing and --- developed communities in the expansion and rehabilitation of their water and sewer infrastructure. He has experience in project planning, feasibility studies, computer -~ modeling, design, bidding' construction administration and observation, operator training, and community engagement. acnv'Cc an««p' Granular Activated Carbon Water Treatment Plant | St. Paul Park, K4N Water/Wastewater CL/cw/. CITY orur. pxuL pxnx PROJECT DURATION: MAR uo1o ' OCT eouo nsv/'r»^r/»w' Conducted u feasibility study to evaluate water supply and treatment alternatives. Completed Professional Engineer water distribution system modeling to identify water distribution system improvements associated IVINw57814 with the water treatment plant (wTp). Provided design, bidding, and construction administration rooc^`/om. and observation for the granular activated carbon (oAo) w7p Coordinated with state agencies, msnginEnvironmental |ubomto,ioo, and the community to satisfy stakeholder expectations and provide quality drinking Processes,Cornell water tn the citvx residents and businesses. univomuxcol4 aA Physics and Water Treatment Plant Improvements | TOnk8 88y' MN wvthemudov'St.Olaf uL/cwn unv OF /omxx axv CoUoge.2on pnuJsoT ooxxr/um. MAY e018 NOV e020 Completed u water treatment plant (WTp) evaluation to identify needed improvements. Provided design, bidding, and construction services for the wTP improvements. Performed construction administration and observation, assisted with Drinking Water Revolving Fund (ownp) upp|ioution and construction administration per mwxF contract requirements. Water Treatment Plant Feasibility Study | Lino Lakes, IVIN CITY or LINO LAKES pnojcrro:nxr/om. MAR eoeo Juweoxn Conducted a feasibility study to evaluate water supply and treatment alternatives.Completed water distribution ovnam modeling to identify water distribution system improvements associated with the water treatment plant (WTp). Coordinated with state agencies, laboratories, and the community »o satisfy stakeholder expectations and provide quality drinking water m the ohv's residents and businesses. A Proposal for Design,Bidding,and ConstructionAdministration fo,a Water Treatment Plant for City of Lino Lakes Project Personnel 12 WATER TREATMENT PLANT OPERATOR SPECIALIST Serving as WSB's Director of Operations,Chris brings a unique perspective to our clients ., as a past public works system operator at multiple organizations. He has served as a Director of Public Works in three communities and public works profession for 25 years. Prior to working at WSB,Chris served as Director of Public Works for the City of Rochester from 2018-2019, the City of Lakeville from 2008-2018,the City of Hugo from 1999-2008 and worked for the City of Apple Valley prior to 1999.Chris holds a Class A Water Supply System Operators License from the MDH and a Class A Collection System Operators License from the MPCA. SERVICE GROUP: Lakeville Water Treatment Facility Expansion I Lakeville, MN Municipal ITY OF LAKEVILLE REGISTRATIONS: JAN 2012 - JUN 2015 Class A Water Operator Chris served as the Project Manager and Owner Representative for the design and construction of SA Wastewater Treatment the first major water treatment facility upgrade in nearly 15 years.This projected included increasing Facility the treatment,pumping and storage capacity of the water treatment facility by over six MGD. Certified Tree Inspector Lakeville Well Development I Lakeville, MN EDUCATION: Bachelors in Business CLI"'7: CITY OF LAKEVILLE Management,College of St. DURATION: AUG 2008 - JUN 2018 Scholastica Chris served as the Project Manager and Owner Representative for the design and construction MEMBERSHIPS + of four municipal wells(Wells#19-22).These wells were constructed in the Prairie Du Chien-Jordan RECOGNITIONS: and Tunnel City-Wonewoc aquifers with pumping capacities from 500-1500 GPM. Chris'oversight APWA:Chapter President of these projects started from conceptual stages of master planning of a well field to placing them (2017)&Current Alternate into service. Delegate AWWA:20-year member Hugo Well Development I Hugo, MN MSSA CLIEN f: CITY OF HUGO DURATION: JUN 1999 - AUG 2008 Chris served as the Project Manager and Owner Representative for the design and construction of three municipal wells(Wells#3-5).All of these wells included the construction of well houses.These wells were constructed in the Prairie Du Chien-Jordan aquifers with pumping capacities of 1000- 1500 GPM.The well houses included onsite chemical feed systems including chlorine,fluoride and polyphosphate. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Personnel 13 Jake wIn1 , w WATER RESOURCES PROJECT MANAGER Jake has more than 15 years of engineering experience and has managed and designed t many types of water resources projects, including modeling, planning, design, maintenance programs, and construction. He has worked with numerous watershed municipalities, counties and state agencies. Jake's well-rounded water resources skills and experience allow him to collaborate and be innovative while solving challenging water quality and water quantity problems. SERVICE GROUP: Storm Water Utility Update I Victoria, MN Water Resources CLIENT: CITY OF VICTORIA REGISTRATION: PROJECT DURATION: JUL 2020 JAN 2021 PE MN#49170 Jake worked with the City of Victoria to update the existing stormwater utility fee and rate structure EDUCATION: to better reflect the needs of the community and ensure the rate structure was appropriate,given Bachelor of Civil recent and proposed development. GIS analysis was completed to evaluate land uses and stormwater Engineering,University of demand. A needs assessment was completed using the City CIP,operation and maintenance needs, Minnesota,2006 and other stormwater requirements,specifically the MS4 program,to ensure the revenue generated MEMBERSHIPS + was appropriate given the anticipated needs. Ordinance updates were completed in coordination CERTIFICATIONS: Certified PM #1989038 with City staff to reflect utility updates. Surface Water Management Plan I Maple Grove, MN CLIENT CITY OF MAPLE GROVE PROJECT DURATION: APR 2017 - JUN 2018 Jake and his team worked with the City of Maple Grove to develop a robust plan for managing surface water and stormwater throughout the City. Maple Grove is a rapidly growing community with challenges related to both urban and rural infrastructure. This plan is consistent with the goals and policies of the Metropolitan Council and the three watershed management commissions having jurisdiction within the City: Elm Creek Watershed Management Commission,Shingle Creek Watershed Management Commission, and West Mississippi Watershed Management Commission. The planning process included a detailed implementation plan, flood study and modeling of 25 problem areas, subwatershed assessment prioritization, BMP maintenance considerations and prioritizations,and grant funding identification. Utility Rate Study I Shakopee, MN CLIEi41: CITY OF SHAKOPEE PROJECT DURATION: SEPT 2021 - CURRENT Jake's team reviewed and evaluated the City's existing Storm Water Utility Fee to identify properties not charged according to the most recent fee structure. The recommended updates will generate additional income for the City's Storm Water Fund and ensure consistent application of their fees. The team also recommended increases to the City's Stormwater Treatment and Regional Infiltration charges,which are applied when developments utilize regional stormwater management features in lieu of onsite treatment BMPs.These updates will help the City fund the construction of regional basins for development and better manage their stormwater management system for the next 5 to 10 years. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Personnel 14 Henry Meeker, E1 GRADUATE ENGINEER Henry is a starting water resources engineer in training. After graduation with a civil ' engineering degree focused on water resources, he began working full time with WSB. Henry has experience with bathymetry mapping, spread and run calculations, and pipe design. fl 1 3 fr f t ,t• ifr I� Sj3 3*3.: f .4t�1 SERVICE GROUP: Champlin Heights Road Reconstruction Champlin, MN Water Resources CLIENT: CITY OF CHAMPLIN EDUCATION: PROJECT DURATION: JUL 2019- AUG 2019 University of Minnesota, Henry was part of the team that completed feasibility-level design of new stormwater catchbasins Twin Cities,2021 and conveyance systems for the project area.This work included GIS drainage mapping and spread MEMBERSHIPS: and run calculations.The project ultimately helped maintain drivable streets for the city of Champlin. American Society of Civil Engineers Woodbury Pond Bathymetry I Woodbury, MN CLIENT: CITY OF WOODBURY PROJECT DURATION: JUN 2019 Based on data collected in the field, Henry used GIs software to build bathymetric maps of numerous ponds. These maps were used by the city of Woodbury to assess pond behavior and pollutant removal capacity. MS4 Monitoring I St. Paul, MN CLIENT: CITY OF ST. PAUL PROJECT DURATION: JUN 2020- SEP 2020 Henry was part of a team that monitored stormwater flows and quality throughout the summer of 2020 for the city of St. Paul. Monitoring involved data collection, sample collection, and analysis. This monitoring resulted in the development of the city's municipal separate storm sewer system (MS4)permit,required annually by the Minnesota Pollution Control Agency. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Personnel 15 GEOTECH ENGINEER em_ Mark is a registered professional engineer with over 20 years of experience in geotechnical engineering. He is primarily responsible for preparing geotechnical proposals,reviewing soils for recommendations, project management, geotechnical design reports, and scheduling the drill rig crews. Mark is a registered monitoring well contractor with the Minnesota Department of Health. Mark has provided geotechnical engineering and project management oversight for both private and public sector clients. His experience includes both shallow and deep foundation design, pavement design,and slope stability analysis. SERVICE GROUP: Dakota County Roadway Improvements ( Dakota County, MN Geotechnical Engineering CLIEN DAKOTA COUNTY REGISTRATION: PROJECT DURATION: 2014 - 2021 Professional Engineer WSB has provided geotechnical engineering services for the annual reconstruction of roadways MN#41362 within Dakota County. These roadways include County Roads 38,50,62,78,86,88,91,and 96. The IA#19659 roadways have included gravel roadways that are being reconstructed as bituminous, bituminous WI#40912-6 2-lane roadways that are being improved with additional lanes,turn lanes and/or wider shoulders,and MEMBERSHIPS + 4-lane roadways thatare planned for reconstruction and improvements.Mark provided a competitive RECOGNITIONS: cost proposal,performed as project manager and engineer,oversaw the field services,and provided Minnesota Department geotechnical recommendations including design R-values of the soils and recommendations for of Health-Registered subgrade improvements,additional lanes or shoulders,and pavement section. Monitoring Well Contractor #3364 Savage Street Reconstruction I Savage, MN EDUCATION: Bachelor of Science in CITY OF SAVAGE Ttnr.r 2017 - 2020 Geological Engineering, University of North Dakota, WSB has provided geotechnical engineering services for the annual reconstruction of roadways 1996 within the City of Savage. These roadways include Glendale,Vernon,the Hanrehan Lake area,and the Dufferin Drive area.Mark provided a competitive cost proposal, performed as project manager and engineer,oversaw the field services,and provided geotechnical recommendations for subgrade improvements and pavement design. Burnsville Street Reconstruction I Burnsville, MN CITY OF BURNSVILLE '-? "?: 2017 - 2021 WSB has provided geotechnical engineering services for the annual reconstruction of roadways within the City of Burnsville. These areas include Bluebill Bay,Burnhaven,Burnsville Heights,East and West Frontage Roads of 35W,Highland, Highland Upton, Portland, and 150th Street.The roadways included bituminous 2-lane roadways that are being improved with underground utilities,turn lanes and/or wider shoulders.Mark provided a competitive cost proposal,performed as project manager, oversaw the field services,and provided geotechnical recommendations including design R-values of the soils and recommendations for subgrade improvements, additional lanes or shoulders, and pavement section. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Personnel 116 PROJECT ENGINEER Ray is a Professional Engineer with seven years of experience in water and wastewater engineering including: water supply systems, groundwater supplies, sanitary sewer collection systems, water treatment pilot studies, and water reuse systems. At WSB, he works with growing and developed communities in the expansion and rehabilitation of their water and sewer infrastructure. He has experience in project planning, feasibility studies, computer modeling, preliminary and final design, bidding, construction management, grant writing, wellhead protection planning, risk assessments, emergency response planning, community engagement, and state water permitting. Ray is passionate about groundwater, water reuse, water treatment, sustainable design, and community involvement. SERVICE GROUP: Production Well No. 8 & Well House No. 8 1 Caledonia, MN Water/Wastewater CL; I CITY OF CALEDONIA PROJECT DURATION: FEB 2020 - CURRENT REGISTRATION; Professional Engineer Served as a project manager in the permitting, project coordination, design, bidding, and construction management of Production Well No. 8 and Well House No. 8 in the City of Caledonia, MN#57772 Minnesota. Analyzed water quality results to size chemical feeds system and completed hydraulic calculations to identify pump sizing requirements. Ray also coordinated funding with the Public EDUCATION: Facilities Authority and other state agencies,laboratories,and the community to satisfy expectations BS Civil Engineering, and provide quality drinking water to the city's residents. University of Minnesota, 2015 County Road 8 Stormwater Reuse System I Hugo, MN MEMBERSHIPS+ - CITY OF HUGO RECOGNITIONS: JAN 2019 - CURRENT Minnesota Groundwater Currently serving as project engineer in the grant and project coordination,design,and bidding of Association the County Road 8 Stormwater Reuse project.He worked with the City to obtain a total of$618,400 American Water Works in grant funding to go towards the reuse system and worked on the design of the distribution system, Association pump station,and irrigation system upgrades. Water Tower No. 4 1 Hugo, MN CLIENT: CITY OF HUGO rrn+F^T r)URATMP4: JAN 2019 - JUN 2021 Served as a project engineer in the planning,permitting,project coordination,design,bidding,and construction observation and administration for a new 1.5-million-gallon water tower for the City of Hugo, Minnesota. Project includes watermain extension, connection to existing water distribution system,site improvements,and modifications to existing SCADA system. PROJECT ENGINEER Ursinio is a professional engineer in WSB's Water and Wastewater Group. Ursinio brings a detail-oriented attitude to the team that was gained through research-based work while in graduate school. Ursinio has extensive experience in a wide variety of pilot- scale projects ranging from biological water filtration to UV disinfection of wastewater. He is also skilled in municipal water and wastewater infrastructure planning and design, bidding and construction services,hydraulic water and sanitary sewer system modeling, and wastewater treatment modeling. x., SERVICE GROUP: Biological Retrofit Feasibility Study I Baxter, MN Water/Wastewater CLIEN'i CITY OF BAXTER REGISTRATION: PROJECT DURATION: SEP 2019 - JAN 2020 Engineer in Training,ND Ursinio served as a project engineer to study the feasibility of a water treatment plant retrofit PE pending,MN project at the City of Baxter. This project included the completion of a pilot study, an analysis of the historical water demands and a projection of the water demands through the planning period, EDUCATION: MS Civil Engineering an energy consumption evaluation of the existing facility, a projection of the 20-year operational (Environmental Focus) savings generated by the proposed treatment changes,and a preliminary engineering design of the North Dakota State proposed facility upgrades. University 2017 BS Civil Engineering Monticello Water Treatment Feasibility Study I Monticello MN (Environmental Focus) CLIEN' CITY OF MONTICELLO, MN North Dakota State PROJECT DURATION: AUG 2020 - ONGOING University 2015 Ursinio is preparing a feasibility study to evaluate water supply and treatment options for the removal MEMBERSHIPS: of manganese, iron and hardness from the City's groundwater. Gravity filtration (conventional and WEF biological) and lime softening are being considered for treatment. As part of this study, Ursinio is AWWA preparing a financial analysis(funding,construction costs,and water rate changes)for each of the preferred treatment methods. CSWEA Resource Recovering and Energy Committee Member-MN Biological Filtration Feasibility Study I City of Baxter, MN CLIENT: CITY OF BAXTER PROJECT DURATION: SEP 2019 - JAN 2020 Ursinio served as a project engineer to study the feasibility of a water treatment plant retrofit project at the City of Baxter.This project included the completion of a pilot study,an analysis of the energy consumption of the existing facility, a projection of the 20-year operational savings generated by the proposed treatment changes, and a preliminary engineering design of the proposed facility upgrades. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Personnel 18 SENIOR DESIGNER woom Greg has over 40 years of experience in designing water and wastewater treatment facilities, which includes plan preparation, administration and inspection. Other experience includes the final layout and design of municipal and industrial water supply, = - storage, treatment and distribution, wastewater collection, conveyance and treatment projects. Greg also has experience in potable water such as the design of well houses, booster stations,water towers, and ground storage reservoirs. West Water Treatment Plant I Chanhassen, MN SERVICE GROUP: CITY OF CHANHASSEN Water and Wastewater CT DURATI', : - JAN 2016 - SEP 2018 LDJCAHON: Greg performed preliminary plant layout as well as final design and plan preparation functions for Associate Degree in Civil- the water treatment facility site,process,and structural portions of the project.The project included Structural Technology, watermain additions and improvements,6 cell gravity filter,chemical feed systems,clearwell, high Chippewa Valley Technical service and backwash pumps,reclaim tanks,and site improvements. College,Eau Claire,WI, 1977 Advanced Oxidation Process Water Treatment Plant I St. Anthony, MN CLIENT: ST. ANTHONY VILLAGE Engineering Short Courses: PROJECT DURATION: JUN 2015 - MAY 2018 Wastewater Treatment Greg was tasked with preliminary layout, plan preparation, design and final layout for the City's Process Design&On-Site Advanced Oxidation Process Dioxane Removal Water Treatment Plant including existing GAC filter Treatment and Disposal of plant modifications, three unit, double stacked UV treatment units, hydrogen peroxide storage Wastewater,University of and feed system, water supply booster pumps, existing ground reservoir improvements and site Wisconsin-Madison,1980 improvements. Civil Engineering Granular Activated Carbon Water Treatment Plant ( St. Paul Park, MN Curriculum,University of CLIENT: CITY OF ST. PAUL PARK Minnesota Extension,1981- PROJECT DURATION: MAR 2018 - OCT 2020 1984 Greg performed preliminary plant layout, concept drawings, final design layout and construction MEMBERSHIPS & plan preparation functions for the water treatment facility in the general,site,process and structural RECOGNITIONS: Water Environment portions of the project.The project included an enclosed eight vessel filtration adsorber activated Federation carbon treatment plant with exterior underground dual backwash holding tanks.Tasks also included construction observation and administration assistance and construction record plan preparation. Central States Water Environment Association A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Personnel 119 Aaron R. Mueller, PE ELECTRICAL TEAM LEADER Aaron specializes in the electrical design of various building types and understands Y Municipal remodel, addition and new construction projects and their power, lighting, and low voltage coordination implications. When involved in Municipal Water and Wastewater Treatment Projects Aaron works closely with the Process Engineers and City Staff to understand the goals and objectives of the project. From there he bases his power and control methodologies to achieve these goals. Aaron's background as an electrical contractor roots his designs in practicality and constructability to mitigate construction delays and change orders. Aaron will act as the electrical point of contact throughout the design process and seal the documents as the Engineer of Record. He will coordinate with other electrical design staff and other disciplines for quality control. As the project enters the construction process there will be dedicated construction administration staff that Aaron will collaborate to complete a successful project. REGISTRATION: CURRENT PROJECTS: Professional Engineer Minnesota#46184 Water Treatment Plant Filter Addition - Carver, MN EDUCATION: CLIENT: CARVER, MN Bachelor of Science Electrical Engineering, Emergency Water Plant North Dakota State University,2003 CLIENT: OAKDALE, MN Water Treatment Plant Improvements CLIENT: MAYER, MN Reverse Osmosis Treatment System CLIENT: ST. JOHN'S UNIVERSITY, COLLEGEVILLE, MN Water Treatment Plant Chlorine Improvements CLIENT: BROOKLYN PARK, MN Wastewater Treatment Plant Improvements CLIENT: MADELIA, MN A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Personnel 120 I i Ashley Olson, PE STRUCTURAL ENGINEER : + Ms.Olson has served both public-and private-sector clients with facility designs in several kz states. She has an extensive background in structural design with various project types. In every project she seeks to ensure all client needs are met with respect to the structural design and construction process. Ashley has vast industrial/municipal experience as well as working with Owners and Contractors to develop cost-effective but long-term solutions to building structures. REGISTRATION: PREVIOUS PROJECT EXPERIENCE: PE#54295,State of Minnesota MN 10MGD Water Treatment Facility PE#E-16710,State of CLIENT: RAMSEY, MN Nebraska PE#83630,State of Florida MN Wastewater Treatment Plant PE#129129,State of Texas CLIENT: OWATONNA, MN PE#24953,State of New Cove Wastewater Treatment Plant Mexico CLIENT: RICE, MN PE#6201068823,State of Michigan MN Wastewater Treatment Plant PE#0402058282,State of CLIENT: ALEXANDRIA, MN Virginia PE#PEL-PE-LIC-5606,State Wastewater Treatment Facility of Montana CLIENT: DELANO, MN EDUCATION: University of Minnesota- Bachelor of Science Civil MN Wellhouse Engineering,2005 CLIENT: DAYTON, MN A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Personnel 21 Paul Quirin, PE VICE PRESIDENVELECTRICAL TEAM LEADIL Paul Quirin is a licensed mechanical engineer with over 24 years of project management and design experience. Paul's broad array of public sector project expertise includes HVAC/Plumbing design for municipal water and wastewater treatment plants. His knowledge of applicable codes including Ten State Standards, NFPA 820,and Minnesota Plumbing Code allows for seamless coordination between the process engineering and the HVAC/Plumbing systems. Paul's designs provide practical and utilitarian solutions that are cost-effective and consider life-cycle costs as well as up-front capital costs. Paul's project responsibility will be the HVAC/Plumbing Engineer of Record and point of contact that will include coordination with other engineering disciplines. He will fold work with other mechanical and electrical resources within design tree to provide complete, thorough, and detailed Construction Documents. Construction administration activities will also led by Paul but may include other Design Tree staff. REGISTRATION: CURRENT PROJECTS: Professional Engineer Minnesota Water Treatment Plant Filter Addition - Carver, MN EDUCATION: CLIENT: CARVER, MN Bachelor of Science Mechanical Engineering, Temporary Water Treatment Plant University of Wisconsin, CLIENT: OAKDALE, MN 1992 Master of Science Water Treatment Plant Sump Pump Design Mechanical Engineering, University of Wisconsin, CLIENT: ANDOVER, MN 1994 Water Treatment Plant and Well CLIENT: ASKOV, MN Wastewater Treatment Plant CLIENT: CLARA CITY, MN Wastewater Treatment Plant CLIENT: AURORA, MN A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Personnel 22 Thomas Stromsodt, AI OkSENIOR ARCHITECT, PRINCIPAL EL ARCHITECTS Thomas will provide architectural services for your project. Over the last 22 years at Oertel Architects he has gained extensive experience in municipal architecture,primarily working on water resource projects, public works facilities, and parks and recreation projects. Thomas has a proven track record with past and present clients of providing a clear and accessible explanation of the design process, exploring and explaining different building systems,and making sure everyone has realistic expectations to ensure a successful outcome. REGISTRATION: Experience Registered Architect:MN #48038 City of Ramsey, MN Water Treatment Facility EDUCATION: City of Robbinsdale Water Systems Improvements Bachelor of Architecture- City of Marshall Water Treatment Plant Expansion North Dakota State University,Bachelor of City of Eden Prairie Ground Service Reservoir Science in Environmental City of Minnetonka Water Treatment Plant#6 Renovation Design-North Dakota State University City of Ely Wastewater Treatment Facility Improvements MEMBERSHIPS: City of Minnetonka Ridgedale Booster Station APWA-American Public City of Edina Pump House#3 Works Association • City of Edina Pump House#9 APWA Minnesota • City of Edina Pump House#15 American Institute of City of Edina Pump House#20 Architects(AIA) City of Edina Water Treatment Facility#5 Study AIA Minnesota • City of Eagan Booster Station • City of Hugo Well House#6 A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Personnel 23 Performance Quality Management Plan WSB's project delivery process ensures that the project PROJECT CONTROLS will be delivered in a timely and cost-effective manner. Our Project Controls include the following: The organization of tasks will help communicate how critical aspects of the project will be approached. COST FORECASTING Throughout this study,city staff involvement will be Using proven estimating techniques to manage changes critical.This project will lead to the construction of as they occur and identify and implement mitigation strategies to maintain control of the budget. major water utility improvements that will affect water costs and Service to utility customers. BUDGET AND SCOPE MANAGEMENT This is a systematic approach that manages budgets and COMMUNICATION scope to maintain control of the overall budget. Communication is critical to develop a well-coordinated SCHEDULE MANAGEMENT and cost-effective project.WSB will communicate Utilizing technology and the maintenance of schedules and solicit input from the city staff throughout the allows for effective use of scenario analysis and trade-off development of this project. Effective communication assessments which identify alternative solutions. will be essential to obtain valuable input from the city CHANGE MANAGEMENT and provide a successful final design of the Water Treatment Facility. Resolving issues in a timely manner as they arise is critical to effectively managing change. EFFECTIVE PROJECT MANAGEMENT CONSTRUCTIBILITY REVIEWS WSB has successfully implemented Project Controls This is a systematic approach that evaluates the design to manage the project scope, budget,and schedule to identify enhancement opportunities,gaps,staging,and through all phases of the project.WSB's Project Controls alternative solutions. Group works with the Project Manager at project QUALITY MANAGEMENT inception to map out a customized and transparent This unique plan will meet the expectations of the client. picture of quality,schedule, budget, scope and contract compliance.Through this process of continual project CONTRACTOR-STYLE ESTIMATING analysis and management, our clients have the ability to This includes pricing design alternatives, reducing track the progress of the project in a systematic way. construction costs,verifying schedules,and validating the engineer's estimate. A variety of project controls measures are essential INDEPENDENT TECHNICAL REVIEWS to successfully develop and implement projects.Our Technical reviews verify the integrity of design outside of practices include proven approaches and can be the design team. scalable to the project being managed.The WSB Project Controls team will partner with the Project Manager to ORACLE PRIMAVERA P6 provide the appropriate level of oversight and make WSB'S Project Manager uses Oracle Primavera P6, one certain that the project meets the goals established by of the most useful and effective project management the client. software tools available.It is designed to plan and manage complex projects like this one. This software provides all necessary tools and features to manage the project's entire life cycle. Features include risk management,critical path analysis,resources,and cost management. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Personnel 24 West Water Treatment Plant CLIENT: CITY OF CHANHASSEN LOCATION: CHANHASSEN, MN DURATION: 2016 - 2018 WSB provided professional engineering services for the design and construction of a 9 million gallon per day water treatment plant.The West Plant was constructed at the south end of Manchester Road near the intersection of Lake Harrison Road and Galpin Boulevard.After WSB conducted multiple neighborhood meetings and received public input,the plant was designed with a prairie themed architecture and landscaping to fit into a residential neighborhood. Based on pilot plant testing and initial evaluations, the plant was designed to treat iron, manganese,and natural ammonia with pressure aeration, detention, concrete gravity filters,and breakpoint chlorination. The plant also includes a below grade clearwell,filter backwash tanks,and a backwash reclaim system. Chemical feed systems were designed for oxidation of iron and manganese,fluoridation, disinfection,and phosphate feed. The disinfection system was designed for the use of gas chlorine with 1-ton storage cylinders.A stormwater reuse system allows the city to recycle stormwater on site and use it for irrigating the landscaping around the plant and the adjacent boulevards located along Lake Harrison Road. KEY WSB STAFF: GREG JOHNSON, GREG GLUNZ This project included raw water mains constructed from the west well field to the treatment plant in preparation of the outlot located north of the treatment plant site for a future neighborhood park. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Relative Experience,Qualifications,&References 125 WSB PROJECT EXPERIENCE EXAMPLE Advanced Oxidation Process (AOP) Water Treatment Plant CLIENT: ST. ANTHONY VILLAGE LOCATIO ST. ANTHONY VILLAGE, MN DURATION: 2016 - 2018 * tifl i 1 I� .� IIIIIIIIIIIIIIr, ,#W WSB provided professional engineering services to Automated control valves are used to split the flow study,design, and provide construction services for a between the unit(s)that are called for service via an 3,500 gallon per minute(gpm)AOP water treatment plant expanded plant automation control system (PLC/ to treat 1,4-Dioxane.This contaminant was detected in SCADA)to meet the City's water demands.The treated the groundwater aquifer that provides drinking water for effluent water from the treatment system is routed back the City's wells. into the pipe gallery of the existing granular activated carbon(GAC)filter building where the excess hydrogen After careful study of the advantages,disadvantages, peroxide is quenched and removed by the GAC filters. and costs for various treatment options, Ultra-Violet Light with Hydrogen Peroxide was further evaluated as the The St.Anthony Water Treatment Plant is the first most feasible treatment option to treat Dioxane in the advanced oxidation plant constructed in Minnesota that City's wells. Hydrogen peroxide absorbs ultraviolet(UV) utilizes UV light and hydrogen peroxide. light and produces hydroxyl radicals that oxidize and breakdown Dioxane to non-toxic compounds consisting WSB successfully negotiated an $11 million settlement of carbon dioxide,water,and residual chloride. Prior to with the US Army to fund the project.This funding is the design phase,a UV/Hydrogen Peroxide treatment paying for capital and long term O&M costs. system was piloted inside St.Anthony Village's existing water treatment plant.Three UV units were installed !BEY 1',SB ST;�rE GREG JOHNSON, GREG GLUNZ, DEAN inside a new masonry and precast concrete building SJOQUIST, GREG DUERR, DAN SIEBEN, STUART STEPHENS constructed adjacent to the City's existing water treatment plant.The new building includes a chemical storage room for feeding hydrogen peroxide,an electrical room,and a piping gallery.The existing effluent 2017 CEAM PROJECT OF THE YEAR - piping from the existing greens and filters was routed SPECIAL RECOGNITION into the new WTP addition,metered,and connected to the individual UV treatment units. 2019 CITY OF EXCELLENCE AWARD PUBLIC CREATIVE PROGRAMS AND SERVICES IN A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Relative Experience,Qualifications,&References 26 WSB PROJECT EXPERIENCE EXAMPLE Biological Filtration Water Treatment Plant GLIBNT: CITY OF ST. MARTIN LOCATION ST. MARTIN, MN DURATION: 2017 The City of St. Martin, Minnesota had been operating its water system with two shallow wells(Wells 1 and 2),which had benzene levels above the maximum ` m£ contaminant level(MCL).The wells were located near a creek that was the outfall of a wastewater treatment system and considered vulnerable to contamination. The geology of the area is underlain with a granite shelf, Construction of the plant was completed in the fall of making it difficult to find sites with a sufficient yield 2017.The plant has three pressure filter vessels.The within the city limits,so the city drilled two new wells first vessel is a biological iron filter,which receives to the east of the city.The current wells are considered water after air(partially oxygen) is added to facilitate non-vulnerable, in contrast to the shallow wells by the the biological oxidation of iron. Additional air is then creek. However, high levels of iron and manganese in injected prior to the second vessel.The second the ground continued to cause aesthetic concerns, vessel is an ammonia nitrification filter, in which two especially with the staining of fixtures in people's reactions occur.The first reaction,the oxidation of homes. In addition, high levels of ammonia were ammonia to nitrite, is accomplished by nitrosomonas present in the new wells,although not as high as they genus microorganisms.The second reaction is by had been in the previous wells. the nitrobacter genus to convert the nitrite to nitrate. The City explored its options with WSB,Tonka Water, Oxidized manganese and any remaining biological matter are filtered with anthracite and green sand in the Minnesota Department of Health (MDH), and the US the third vessel.After filtration,three chemicals are Department of Agriculture(USDA) Rural Development. added:fluoride for dental care,chlorine for disinfection During this period St. Martin was meeting with the USDA and to maintain a residual in the distribution system, regarding its wastewater treatment system and found and sodium silicate for corrosion control.The filters out that the rates that they qualified for, based on per are backwashed with non-chlorinated water from a capita income,could be carried over to a water system. concrete backwash holding tank in order to not disrupt The city decided on biological treatment, using naturally the bio-growth on the filter media. occurring microorganisms instead of chemicals to The total project cost was approximately$3M, remove contaminants.The city leased a trailer to do a which included the plant and related infrastructure. biological filtration pilot study.City staff did the daily Approximately 45%of the project was funded with a grant testing and pilot work with oversight by WSB and Tonka and the rest from a 40-year loan at an annual interest rate Water.The pilot study was performed for four months of 1.875%, both from USDA Rural Development. to verify that the innovative technology would work with the city's groundwater. Upon achieving successful results from the pilot study,the city authorized WSB to P EY WSB STAFF. GREG JOHNSON, GREG GLUNZ design and bid the first fully biological filtration water treatment plant in Minnesota. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Relative Experience,Qualifications,&References 127 WSB PROJECT EXPERIENCE EXAMPLE Granular Activated Carbon Water Treatment Plant CLIENT: CITY OF ST. PAUL PARK LOCATION: ST. PAUL PARK, MN DURATION: 2020 The Granular Activated Carbon Water Treatment Plant was constructed to support public health by bringing cleaner drinking water to residents and businesses within the St. Paul Park community.Since 2007,the Minnesota Department of Health (MDH) has been h'y monitoring the concentration levels of perfluoroalkyl and polyfluoroalkyl substances(PFAS)in the city's water supply. PFAS are a family of manmade chemicals that do not naturally decompose due to their heat and water ` resistant structure. Studies have found that consuming drinking water with elevated levels of PFAS,over time, j can be associated with high cholesterol, reduced immune response,thyroid disease, kidney cancer and other distressing health problems. In June of 2018,the MDH notified St. Paul Park officials, stating that two of its three water wells exceeded the recommended amount of PFAS to be considered safe for public consumption. In response to this pervasive health threat,WSB partnered with the city + ` to design a water treatment facility and remove PFAS ` from the community drinking water and surrounding ' -yY environment.After completing a feasibility study, Granular Activated Carbon (GAC)Water Treatment Plant ` was designed, bid and constructed.The GAC Water k ` Treatment Plant was delivered under budget and on schedule. KEY WSB STAFF GREG JOHNSON, JON CHRISTENSEN, GREG GLUNZ A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Relative Experience,Qualifications,&References 28 WSB PROJECT EXPERIENCE EXAMPLE Lime Softening Water Treatment Plant Improvements CLIENT: CITY OF TONKA BAY LOCATION: TONKA BAY, MN DURATION: DEC 2019 �' Z+. - .. •.„lam�.-- Rim-.. x i WSB evaluated,designed,and provided construction WSB STAF GREG JOHNSON, JON CHRISTENSEN, GREG services for improvements to an existing 1,000 gallon per GLUNZ minute(gpm)lime softening water treatment plant(WTP). The WTP was originally constructed in 1972 and included a lime silo,lime slaker,clarifier(contact basin), recarbonation basin,three filters, backwash reclaim,and a clearwell.Given the plant's age,several process and electrical components were in very poor condition and made it difficult for the city to deliver consistent water quality.After careful evaluation of the existing conditions and improvement alternatives, it was decided to upgrade the existing pebble lime feed system to a hydrated lime feed system,to replace several of the process and electrical components,and to rehabilitate the existing building structure and architecture.The updated process and electrical equipment will allow for greater automation of the treatment processes and will reduce the operational burden on city staff. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Relative Experience,Qualifications,&References 129 OERTEL ARCHITECTS PROJECT EXPERIENCE EXAMPLE i ROBBINSDALE WATER TREATMENT PLANT The city of Robbinsdale is in the process of updating z their water infrastructure. The work includes a new consolidated water treatment plant, new and refurbished well houses,and a new water tower to replace two existing water towers. Of note,this plant will be the first plant in Y n the Twin Cities metro to include lime softening. Size: 33,630 sq.ft., 2,000-3,000 gallons per minute. 1 _ IF r ` a ,r A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Relative Experience,Qualifications,&References 30 OERTEL ARCHITECTS PROJECT EXPERIENCE EXAMPLE CITY OF RAMSEY W,•TER TREATMEN T FAf'� , RAMSEY WATER < < [ TREATMENT PLANT A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Relative Experience,Qualifications,&References 31 WATER TREATMENT PLANT STAFF EXPERIENCE IRFAIMENT CAPACITY �MINNT80TA .. __._ .. TONKA BAY LIME SOFTENING WTP 2020 1,600 2.1 i r • � • � 1 - IMPROVEMENTS : ! ' BT.-PAUL PARK OAC WTP 2019 5300 I 31 • • — • 1 {{I _ L • -__{ ___ I CHANHASSEN WEST WTP 2018 23,000 8.6 I ! • • • • � ! ! I • • I I i (• I j I ST.ANTHONY ADVANCED OXIDATION WTP 2017 8,300 4.3 _ • • ♦ _ _I {v • � _ _• _ ST.MARTIN WTP 2017 325 0.2 • • • • j • • t �! BROOKLYN CENTER WTP 2015 30100 j.. 8.6 • • • • i �__ • • �_ I •:_� NEW R WIT)WT 2012 700 04 ♦ •�_ELMORE WTP • • 4 : • _ _i • ( • P 2006 62000 6OKLYLPAUW 21109 75000 22 • • 'I •_.._j.....•._......_•_BUORNBVILNE SRRFAT I • ....._ _... ._ • , _. _. _._- _ ._.._~—_.__ HAS T INDS WTP - 2008 22100 3.5 i i —�_ �— I i • ♦ _ I BAYPORT VOC WTP 2007 3,200 0.9 --._ • 1. _ .. .._./1 � -_1 ...._ .__...__ • • .. PLYMOUTH CENTRAL WTP 2006 67,800 13 • • • • • •_ .... ___ -I P LYM OATH 2AC HA RY WTP EXPANSION 2006 67,80D 15 • • • • • r r ! .l—. -_... _._ CHANHASSEN CAST WTP 200E 21400 8.6 • • • • • • ._— CAMBRIDGE WTP 2006 5,900 5 • • • • • • • ST JOSEPH WTP 2005 5,100 71 ♦ • • j • ♦ __ _ ___ _ • -- .._ -...... ... - .... I} ._ ._.... .. _ _ MINNETONKA WTP NO.16 2005 51,500 8 6 i • • •_� I • • T _ ......... "ICI }) STAPLES WTP 2004 3,300 0.7 • • • • i O- • I • —1—_..T ------1- - IIMONTCOMERY WTP 2004 _ 2,900 2.2 • ! i I — , _ 1 .{— SAUK RAPIDS WTP —_ 2003 11,400 3.5 • • _._. T—`....• --! .: �- • �NEWP RA OUE WTP NO. 2002 5,000 1.4 • ! 111 _ !— • • �_ � � •_ — SPRING LAKE PARK WTP 2003 6,400 3 • • • • _ ....... .... _ _ __ HINCKLEY WTP 2001 1,800 1.5 • • ..... •..__.. I ....._. • .....�-_—` ..__ T �11ATELLWTP2001 15 800 5..ITEPARKW7P 2000 6,700 3.5LO RD WTP EXPANSION 2000 2,300 ?2 • • •VAGC WTP NO,3 1B89 22,800 4.3 • • I • • ♦ ___ • _._� _ ♦ __ VIRGINIA PUC WTP 1909 3,700 4 • • • • • • 0.2 • -- VERNON CENTER 1998 365 • • I • • _ _ —{I 1 _� C h1AMPLIN WTP NO,1 1897 23100 5 • • • • I _ • • • _ ZIMMERMAN WTP 1995 6300 0.7 • • • • • I ! wlscorvsl HUDSON WTP NO.3 RENOVATION 2008 12,200 1.4 • • b • i • • • HUDSON WTP NO.6 RENOVATION 2008 12.200 1.4 • • _ i i -- + • • O • __. .. .... HUDSON WTP NO.10 2001 /2,200 2.0 • • • • I f 0 ( ��- • _• HAR7F0 RD WTP 2007 13,000 2.4 • 1 • • A I i, b I • HUDSON WTP NO.8 2003 12,200 3.0 ......_.- ._............ ....—._..... ........ ....... -__. ..._._. _._. r -.__.. . ._.._. SPENCER LIME SOFTENING WTP 2014 11,300 3.3 • 0 • ! NORTH DAKOTA DAKOTA MAGIC CASINO WTP._ _- 2010 _...NA 0.5 !.....♦ •... • I........ 1z -- -- i._ A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for Ci of Lino Lakes tY Relative Experience,qualifications,&References!32 References CITY OF ANDOVER DAVID BERKOWITZ, PE, DIRECTOR OF PUBLIC WORKS/ CITY ENGINEER 76 3.76 7.513 3 D.BERKOWITZ@ANDOVERMN.GOV CITY OF ST. ANTHONY VILLAGE JEREMY GUMKE, PUBLIC WORKS SUPERVISOR 612.740. 31717 JEREMY.GUMKE@SAVMN.COM CITY OF PLYMOUTH MICHAEL THOMPSON, PE, PUBLIC WORKS DIRECTOR 763.509.5501 MTHOMPSON@PLYMOUTHMN.GOV CITY OF CHANHASSEN GEORGE BENDER, ASSISTANT CITY ENGINEER 612.352.7106 GBENDER@CI.CHANHASSEN.MN.US A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Relative Experience,Qualifications,&References 33 CITY ISSUES NOTICE TO PROCEED COMPLETE FINAL PLANS AND SPECIFICATIONS CITY COUNCIL APPROVES PLANS/ SPECIFICATIONS & AUTHORIZES BIDS BIDS OPENED PUBLICLY CITY COUNCIL ACCEPTS BIDS & AWARDS CONTRACT ISSUE NOTICE TO PROCEED CONSTRUCTION CONSTRUCTION COMPLETE A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Project Schedule 34 WSB proposes to complete all of the work described in this proposal for the following estimated fees: Design:$696,940(3.32%of preliminary estimated construction cost) Bidding: $19,021 (0.09%of preliminary estimated construction cost) Construction Administration, Observation,and Plant Start- up:$731,769(3.48%of preliminary estimated construction cost) Total Design, Bidding,and Construction:$1,447,730 (6.89%of preliminary estimated construction cost) The estimated task hours and hourly billing rates for each team member for the proposed hourly not-to-exceed fees are listed in the table below to the right.The estimated fee to provide construction observation for up to 18-months of construction accounts for approximately 33 percent of the total estimated fee.WSB's subconsultant fees account for approximately 23 percent of the total estimated fee. The proposed hourly not-to-exceed fees include 40 hours of - construction observation per week For up to 18-months of pre- construction set-up and construction observation.Additional on site construction management and construction observation ---- hours can be provided for additional fees at our currently hourly - - billing rates if required by the city.Our standard billing rates are adjusted annually.Costs associated with vehicle mileage,cell f phones, reproduction of common correspondence,and mailing are included in the above hourly rates and will not be charged separately as reimbursable expenses.The total estimated fee will not be exceeded without prior authorization from the city. illM Construction materials testing services are not included in this proposal and will be estimated during the final design phase .. - when quantities for testing can be determined. Funding administration services are not included in this proposal but can be provided at our standard hourly rates upon request. A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Proposed Fees 35 TASK I DESCRIPTION 2� HOT TOTAL COS r I I FINAL PLANS AND SPECIFICATIONS PHASE K'ck ff t g with C'tystaffto 14 62,216.00 i i 2.0 2.0 2.0 2.0 2A 20 20 nt II Pinnt objectives. _ _ _....._.._... __ 12 Kickoff-meet rig with design team el 3A 3.0 3.0 3.0 310 9A 3.0 3.0 3.0 2A 2A 2.0 3A 3A 3B WSB ¢6,068.00 1.3 Collect all required survey data 1.0 lA 40.0 _ 42 38,591.00 Obtain all required geotechnical 1.4 evaluations(12 soil borings and 1.0 Lump Sum $12,306.00 9wtechnnieal rape n) 1.5 Pwmrovidfe wetland delineation pump Lump Sum $3,600,00 eel lA 1.6 Proper.SWPPP Plan 1.0 21) 4.0 $833.00 Evaluate.apathy of downstream sanitary sewer syarom.and lift stations 1.7 for wastewater to be discharged from 4.0 12.0 16 $2.624.00 water treatment plant. j Prepare plans and specifications for 1.8 1204nch and 24-inch raw watermain. 2-0 3.0 20,0 604 40.0 4.0 120 $18,530.00 1 oa Birch Street. Attend up to three(3)virtual design progress meetings with City Staff 1 during final design process ro address 1.9 outstanding issues,to coordinate 9.0 9A 9.0 9A ISO Suo 9.0 BA BA 9A 9A 410 91 $14,500.00 an and specification reviews,and to review the prolect schedule for the 30-parts.plans,60-pament Plans, 95-percent plans,and final plans. 110 Apply for and secure all required 1.0 4.0 4.0 16A 2A 6.0 31 s3,790A0 permlts from regulatory agencies. Prepare and present 30-portent plans to City Council to obtain input 1.11 on accommodations for educational 200.0 200.0 200A 200.0 250.0 ISO 4.0364 21D MID 61LO solo 24.0 SOLO 60.0 10.0 44A 38.0 88.0 70.0 40A 11,724 6263,866A0 tou acceptable design aesth-d-, and construction materials. Prepareand present final plane 112 and specifications to City Council 200.0 200.0 200.0 MOO 450.0 4.07 310 2.0 14.0 226.0 80.0 32A 12010 solo 16.0 54.0 92.0 88.0 220.0 44.0 2,348 1113581096A0 for approval and authorization to advertise bids. TMs i-Total W59 Staff Estimated Hour.and 423.0 4170 418.0 420.0 0.0 714.0 4/.0 75.0 117.0 8.0 4- a- 40.0 306.0 160.0 64.0 218A 726A 26A 122.0 130.0 188.0 290,0 92.0 4,434 5696,940.00 TaW Phase Fee Prepare aM puhssh adswnieements tow bid.in ae.rd-with applicable 2.1 State laws pertaining to competitive 0.6 1.0 2A 4 $44200 bkts. 2.2 Publish end adrainleteradvertiseme 03 nt. 3.0 4 $W00 for bide on OueatCDN. 2.3 Receive and respond to questions 8.0 4.0 4A BA 4,1) 41D 8.0 BID 4.0 12.0 8.0 8.0 16.0 8.0 to 105 s16.02LOD from ail plan holder.. 2A Open Bids 110 1.0 1.0 3 s448A0 s400A0 23 Check bids for errors and omiasiom. 1 1,0 A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Proposed Fees(cont.)136 Proposed Fees (cons.) Al 2 6 Tabulate a8 bids and p-lde t 0 I 2.03 $400.00 tabula[(on[o the Ch, ! 2 7 Provide a letter of recommendation for 10 3A 2.06 $916.00 warding the bid. Task 2-Total WS8 Staff Estimated Hours and 13A 6.0 4A 0.0 0.0 ILO 7A 4A 0.0 0.0 O.O 0.0 OA 8.0 8.0 4.0 12.0 0.0 6.0 8.0 0.0 16.0 8.0 13.0 127 $19,021.00 Total Ph a s Fee t ,. ...... .. ..,, -.., a > .. 31 Pr pa.and execute contract ts. 10 2A7 3 $550.00 documen 9.2 Prepare and Issue Notice of Award, 1.0 1 $206.00 8.3 Prepare and Issue Notice to Proceed, to 1 $208.00 __.......____..__......-_.._..._. Schedule and manage the pre. 3A construction conference,including 4,0 1.0 2.0 OA 7 $1,252.00 meeting minutes. Review shop drawings and other 3.5 submittals and communicate required 4.0 32.0 102.0 8.0 72.0 18.0 8.0 57.0 297 $45.569.00 revisions in writing in a timely mentrar. II 3A Provide conatructionatakin} 40.0 40 $6.240A0 37 Revise plane sa needed during 3.0 2.0 40.0 20.0 10.0 4.0 8.0 20.0 2.0 32.0 16.0 6.0 8.0 10.0 10.0 191 $27,494.00 conetruotlon. Provide dally construed- 3A administration and project 30" 5.0 42.0 8.0 440 $91,106A0 anagement(1 hour par day for 18 months). 3.0 IFull time eonatmctbn obserx.tl-for ! 18 months j 3066A aA 3.074 $460,676.00 Coordinate and attend monthly 3.10 construction meetings on•ske with 64A 64.0 18A 4A 3.0 6.0 4.0 141 $24,333A0 ! epprupdata StnR. 3.11 Assist with processing partial and final 4.0 20.0 20.0 44 $5.664.00 payment applications. Perform final inspection and dewlap/ 3.12 anege punch list for required B.D 32.0 40.0 12,0 8.0 BA 8.0 so 41D 8.0 132 $20A52A0 corrective work. Coordinate plant startup with City !staff and document all plant startup !operations including chemical 3.13 feed rates.HVAC operations, 24,0 BA 60A AID98 $19,152.00 dehumidification operations, emergency Power operations,SCADA integration and operations,etc. Schedula training for City staff for all3.14 aspects of the WTP. 4.0 4 $680A0 335 Complete ea-built survey work. 1.0 32A 33 $6,737.00 i Pre pare and submit record drawings in an approved electro,Ic fo,met 3.16 within six months of construction 40.0 2.08.0 9.0 4.0 4010 2010 8.0 3.0 72.0 4A 150 $10,3621D0 completion. Task 3-Total WSB Staff Estimated Hours end 4924 56.0 43A 20A 31 80A 80A ft. 38A 13.0 0.0 CIO OA 72.0 It.... 20A 25,0 165.0 62A 9A 23A 20.0 11. 16.0 32.0 4A82 $731,769A0 Total Phase Fee Total Estimated Hours 928A 479A ass. 364D.0 80.0 8020 141A 116.0 /30.0 6A 44A 4.01/2A N2A 197A 93A 386.0 178A A- M. 1- M. 3/8.0 137A 9,223 Hourly BRIIn9 Rete $208 $145 $145 $150 $206 $162 SM $128. $154 $182 $106 $95 $2D6 $165 $12D $135 $120 $85 $75 $180 $130 $195 1 $ISO so Total Proposed Fee 81,447,730A0 A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Proposed Fees(cont.)137 sbuuapuad lenja!11 said wex3lsl!q!yx3 Iaa(oad leluawa(ddnS XI pUc3ddV EXAMPLE DRAWINGS I WEST WATER TREATMENT PLANT V1OS3NNIW N3SSVHNVHO d0 u13 3HI HOA R ^^^ 1NV1d 1N3W1V3H1 N31VM 1S3M 8=M i N I I = O 1 1 J I I W I i O W 1 I W I 11 IV•11 � I I I I I j 1 wow } j >zz I � Z s I �� moo a a a�3 I I I O ' O w b r/- b FD b V l 1 O+ W e I milli II } NII I -- I 9� a 1 I . 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F Q fiE1h,C MdA-_- tai t�/ �6j I I I T LU flAWItM PREVLOq, E PVYP 1 /fit v-NOICX MIIFM I a L► tl I S = L1 PRfaURE REIIIILW,O VALVE W61 TAM ZONE 1Y/ NF]R BDK(11PIHiL) I 1 SntAT 911AfnE 1 I I i b AP CHECK VALVE -- V-Ill-' -2GOi¢` ' 1 �� d I I An R ..Q aR acae-- i k BACKWASH /tirl_1-------- ­2 RECLAM RECWM TANK NO. 2 4 P FSSURE 6 0E VALVE AND EQUIPMENT ABBREVIATIONS I '/-M-2 6 e ® SUWC M%EW All R— M AMI LABI : I P-6L-I�ti n1� s°r amAss yr"` T -- FILLER FILTER FILTER i wv�nNc 6lxaaN ' I VJ eMTm�RvanAw vKtc ro Hww 1._.z._. v-6-t i PnISWRE RKrIaH No. 4 No. a No. e , p Y p I $ ! rz PROPELLER 1llEli f��E R�1FA�EFiI hM YNYE S V-M- Snow , � P_�_x I � 9 3. C 56— Ij PRE6AIIE Af]UTOR Hs Wp, WE VAL S \~ -r•i ;r `./ f gY ' P rc RmuaNc wLVE 1�.L�J, RC RELWY,IA1FA ro�, I 1 •_._ SPPAY WA9H 6VPRY I1NE t ,y��I ri SPMY WASH OUCH 1 CHEC'CIfVAIVE/ __���WSII�pN_____________________`__�..._.---.--.-_ ---_-___-_ ___-_-SPMY_-P£PRDN •_•J i ; CRY Y IcaLLrz______._._ IELWFII N smol -----------------------------------------. . ' D PROJECT NUMBER 15-03 0 N5B PROJECT NUMBER 01694-720 PW= FLOW SCHEMATIC PG-02 T7 (D 7 2 X A 0 ::E D m 0) 7 x (D 0 D -H O m d r m o KEYNOTES m _......... [[>24'X24'FL TEE ®2-AIR/VACUUM VALVE(SEE DETAIL X/PD-01) EL 102Z.50 ^ CD ED 24'X88'L FL STATIC MIXER ®8'MA W/TIE RODS TO NEAREST FL D. TD 4'AIR/VACUUM VALVE(SEE DETAIL K/PD-01) MD SAMPLE TAP(SEE DETAIL G/PD-02) <D w Q TD 24•FL 9P ELBOW ®1'AIR RELEASE VALVE(SEE DETAIL H/PD-02) < ._+ DD 24'M'FL REDUCER ®3'AR/VACUUM VALVE(SEE DETAIL K/PD-01)TYP OF 3 W OD 24'FL BUTTERFLY VALVE ®2'GALVANIZED THREADED IP VENT W/2-9A ELBOWS TYP Z O - (D 24'FL PRESSURE AERATOR(BY FILTER MFR) ®B'FL MAG FLOW METER G) ®24'FL SWING CHECK VALVE ®18'BUTTERFLY VALVE TYP OF 3 PUMPS j co n- OD WATERSTOP COLLAR(SEE DETAIL A/PD-01) I FILTER ROOM __ - — MD24'MJ ST ELBOW - ®8'FL BO ELBOW -„^-.. =-`^ .......— ._..__— ... EL 1015.170 N ®8'FL BUTTERFLY VALVE t'. ...L................... ......:J::............e..e. ..._..w..._.......e V-AR-3 r ®8'FL SWING CHECK VALVE EL 1012.50 m FL MAG FLOW METER R O 0 ®8'MJ 9P ELBOW TYP.OF 3 V-AR-2 _.___ i ♦ - @ o O MZI D 2:SEE NOTE SCH.80 FVC CAMiIER PIPE FOR PE FLUORIDE FEED -AR-3 T V-RW-1®- V-RC-RC ! i 2'COLOR COOED SCH.SO PVC CARRIER PIPE FOR PE SODIUM •® -3 PIPE GALLERY • g a I D (D PERMAN ANIATE FED(SEE CHEMICAL FEED NOTE 2) �,1004.50 p V-RC/CV-I 0 to C ®3/4'SCH.80 CPVC CHLORINE CAS FEED PIPE s __..._ ..__.__... —._.__ ........ ._...-._.. EL 1004.25 m ,0. ®2'COLOR COOED SCH.BD PVC CARRIER PIPE FOR PE ORTHOPHOSPHATE - v 20 DIP u u L-- u u u CE>-- FE-4 70 0' FEED(SEE CHEMICAL F V-EF-2 O ® FEED NOTE 2)BACKWASH TROUGH TYP P EL 1000.50 MD UNDERDRNN SUPPORT COLUMNS O 24'OC TYP - PUMP ROOM �. n3 wy O D V-EF-1 EL 990.00_ V-RW/CV-I 3 D n .��r 3 ®AIR WASH DIFFUSERS O 8' D TYP e I ®CONCRETE UNDEftDRAIN(SEE OLTNL c/PD-03) I Q 998a3 8'316L SS AIR HEADER k SUPPORTS By FILTER MM TOC s b E 894.50 (e p -. ®LEAN MIX CONCRETE FILL TO EFFLUENT PIPE INVERT TYP -._ ...... .. ..... 1 ..—_. _. _.._ ___ ^. N ®3'THICK TORPEDO SAND MEDIA LAYER TYP ®18•THICK GREENSAND MEDIA LAYER TYP ®12'THICK ANTHRACITE MEDIA LAYER TYP / O ®12'BLIND FLANGE TAPPED CDR AR/VACUUM VALVE l CLEARWELL i¢'BBB.50 _ Q BBB.50 Fbl, J ®;2 12'FL TEE .__ F 987'.SO 1�,J; _ _ TOO 983.30 A��� ' T-®12'FL BUTTERFLY VALVE 24 DIP TO LOW PR RE STSIEM ®12'FL BP ELBOW 12'DIP TO HIGH PRESSURE SYSTEM �� D N ®CONCRETE PIPE ENCASEMENT(SEE DETAIL B/PD-05) - 9 �_,_... _. _...-- 24'DIP AAW WATER INRUENi Z ®24'BUNG FIANCE TAPPED FOR AIR/VACUUM VALVE TOO BB2JMl��/ B'DIP RECWM RETURN ®UFRNG MONORAIL W/TROLLEY&HOIST(SEE STRUCTURAL) � 'f PROCESS SECTION ®20'MA W/TIE RODS TO NEAREST FL o Y-b•b•-4• Id-8' -HEART-4IC�FFFO NOTF�: ®20'FL NAG FLOW METER � 2 FEED PUMPS SHALL BE FURNISHED BY OWNER AND INSTALLED BY CONTRACTOR. Z ®24•X20'FL TEE 2.POLYETH LENE FEED TUBING 8:VALVES TO BE FURNISHED AND INSTALLED ED BY OWNER. ®S. R BUTTERFLY VALVE CONTRACTOR SHALL PROVIDE Nl CHEMICAL INJECTORS,CARRIER PIPE&OTHER g O ®24'XB'FL TEE MATERIALS AS SHOWN AND SPECIFIED. CL (n ®20'FL 9P ELBOW LLI 8D 241U8'FL LEE TYP OF 3 PVAIPS ._.___.__................._..___............-.--............._...______.._.._..._.....___—___....._.....___— Z LL Z ®12'%12'FL TEE IRO: '.4R4OIOlD1 EL 1025.50 w O Z ®18•FL BUTTERFLY VANE TYP OF 3 PUMPS -_-_, .._._.._._.__.-...__._.. .............._._ _.... _ ®12.FL BIT BASE ELBOW 8:BASE TYP OF 2 PUMPS(SEE DETAIL M/PD-01) _ ®18'FL SWING CHECK VALVE TYP OF 3 PUMPS L�U ®16'X12'FL REDUCER TYP OF 3 OC w Z ®12-FL RUBBER FLEX COUPLING W/TIE RODS&LIMITER SLEEVES ®12'XS.FL TEE W/PRESSURE GAUGE TYP OF 3 PUMPS T �' _. E i ry ,. ,'y 1':'" i;i.' {EL 1015.17 W h U) ®HIGH SERVICE PUMP(SEE BASE DETAIL J/PD-01) N ®24'X18'FL TEE EL 01250 ( V_DT 1[B�� HWL 101333 ~ N ®20'X78'FL TEE .._____.._...,. s 1 Q O a ®18•FL 9V ELBOW ®20'X20'FL TEE .. C. ®20'MJ ELBOW POMP ROOM .�.a � �'1WB.1] ®20'FL 9P BASE ELBOW&BASE(SEE DETAIL Q 10D7,py FILTER INFLUEM T M/PD-01) ¢ DETENTION TANK .F. TYP V-S ®20'X18 DREDUCER 1 1004.50 f 1004.y0 TYP 78'DIP 20'OP O U ®20-X20•FL BASE TEE k BASE CSFE DETAIL I TYP M/PD-01 SIM) E 1U01.79 ®FLOOR PIPE SUPPORT TYP(SEE DETAIL A/PD-02) 71'P _—_ _ ( 24 DIP Q.1000.B] ®MULTIPLE PIPE SUPPORT TYP(SEE DETAIL L/PD-02) V_�_1 FE-8,6'-8'JFF ®SEALED FmOR SLEEVE TYP(SEE DETAIL G/PO-03) - \ - '-- '-- ------- Q 99].8] ®MJ X NU WNl PIPE(SEE DETAb_F/PD-01) C B9].00 V BW 11 V-FW] ac BBB.J3 I R a ®8•NJ 9P ELBOW ®WALL BRACKET PIPE SUPPORT TYP(SEE DETAIL F 1001.30 - :_ -.. TYP TOP 99450 HE 99J.50 d tl ®J ISM PD 03Oh K OFF LANE(SEE OETAlIS IllTYP 1_` '' _ B I H / /PD-03) ..... E[ ®NON-SHRINK GROUT OR LEAN MIX CONCRETE FILL TP EL 989.50, TYP p x tl SLOPED TO DTWN PIPE TYP -) -----_—�- 12'DIP FILTER EFFLUENT M 99150 A @ ®38X38 COW PUMP BASE(SEE DETAIL J/PD-01) TYP 8'DIP NR WASH Q 98950 g ®8•FL BIT ELBOW 20'DIP BACKWASH WASTE _ TOG 985.50 ®4-FL 45-ELBOW _ ... .... OP BACKWASH § ®8'FL 4 ELBOW -_ __ dg ®8'FL 45*ELBOW g ®20'FL BUTTERFLY VALVE ._— _.._.._ ,,...... AV 9 C ®24-= FL REDUCER 2 PROCESS SECTION D ®12'TAPPED BF W/2' TYP IP wELBOW VENT TYP CRY PROJECT NUMBER 15-03 a ®8'FL MAG FLOW METER TYP W58 PROJECT NUMBER 01894-720 PROCESS SECTIONS P-TO CD z 3 a X A EXAMPLE AWARD NOMINATION I WEST WATER TREATMENT PLANT West Water Treatment Plant CITY OF CHANHASSEN, MN r . � �1 r 2019 Public Works Project of the dPJWA Minnesota M Chapter Year Award Nomination m..,Ya�.. . ENVIRONMENT 1 $5 MILLION, BUT LESS THAN $25 MILLION ws b A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Appendix 42 EXAMPLE AWARD NOMINATION I WEST WATER TREATMENT PLANT PROJECT OVERVIEW r x 44 a� r WSB partnered with the City of Chanhassen to provide A prairie-themed architectural design was selected professional engineering services for the design and to blend in with the neighborhood asthetic,while construction of a 9 million gallon-per-day water treatment complimenting the native prairie grasses and nearby plant.The plant is located in a city park and residential wetlands in the area.The plant features a filter backwash neighborhood.Considerable community concerns reclaim system that recycles over 95 percent of the about the location of the facility led WSB and the City to filtered backwash water and includes a stormwater reuse conduct several neighborhood meetings.The meetings system that allows the City to recycle stormwater on site were designed to alleviate concern and offer solutions to for landscape irrigation around the plant and adjacent potential project issues.Ultimately,it was determined that, boulevard.A public playground was also constructed due its location and size,the water treatment plant would on the north side of the water treatment plant to bring be built into the hillside of the park property. additional value to the residential community. 1 A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Appendix j 43 EXAMPLE AWARD NOMINATION I WEST WATER TREATMENT PLANT __-------.-_._-________--- I CHANHASSEN WATER TREATMENT PLANT DEVELOPMENT s - ,r Chanhassen is a growing Twin Cities suburb that is a below grade clearwell,filter backwash tanks,and focused on advancing its development.In 2006, backwash claim system that recycles over 95 percent Chanhassen opened its first water treatment plant, of the filter backwash wastewater. which removed iron and manganese.Located on the eastern edge of the city,the plant served the low After detention,the water splits before reaching pressure zone,which wrapped around the higher the filters,featuring two banks of three anthracite portions of Chanhassen;leaving an enclave on the greensand filters.Both the east and west plants pump west side that did not receive treated water.Within into the low-pressure zone,the main zone in the city. this area,the City owned land and had plans to build The west plant serves the higher areas of the city and a second water treatment plant.Prior to planning,the was designed intentionally oversized to support future surrounding area was filling in with large residential growth in the community. homes and homeowners who became concerned about a utilitarian facility in their neighborhood. A stormwater reuse system allows the City to recycle The City and WSB,moved forward with plans for a stormwater on site for irrigation and landscaping new water treatment plant while also meeting with around the plant and adjacent boulevard along Lake representatives of the homeowner's association in Harrison Road.Utilizing non-treated water for irrigation the Lake Harrison neighborhood.Eventually,the will save the City millions of gallons of treated water community settled on a prairie-themed design for the and chemical costs per year. plant building and adjacent land.The facility was built into a hillside,which required a great deal of earth moving.The new water treatment plant provides a 1 pleasing aesthetic for residents,while keeping less attractive elements of the facility hidden from view. The plant has a treatment capacity of 9 million gallons- per-day and was specifically designed to treat the natural iron,manganese,and ammonia levels that exist in the City's aquifer.Based on pilot plant testing and initial observations,the plant was designed with R emu» pressure aeration,detention,concrete gravity filters, 2 A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Appendix';44 EXAMPLE AWARD NOMINATION I WEST WATER TREATMENT PLANT WATER TREATMENT PLANT IS WELL-RECEIVED BY COMMUNITY llry During the design phase,four neighborhood meetings were held at the Chanhassen Library to discuss the residents'concerns and provide updates on the project. Several display boards were presented to show virtual architectural renderings of the proposed treatment plant building,plans to protect nearby wetlands,a traffic control plan,water treatment processes,and the project schedule.In addition,questionnaire/comment cards were handed out at each meeting as another method of feedback for the City and design team to consider. The plant's prairie-themed architecture,hillside construction,and adjacent playground provide a unique aesthetic in the residential development.Sound attenuation devices were installed on the HVAC exhaust systems to dampen the noise of the ventilation systems for nearby neighbors.Additional chlorine gas sensors, alarming devices,and chlorine cylinder shutoff valves - were also installed to ensure the chlorine gas would remain in the facility and not become a potential hazard to the community. 3 A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Appendix 145 EXAMPLE AWARD NOMINATION I WEST WATER TREATMENT PLANT INNOVATIVE CONSTRUCTION MANAGEMENT M ?paw,a Ili i The West Water Treatement Plant project was completed by steep slopes,there were little means for access under budget and on schedule.The general contractor, and construction staging.Without excavating the Rice Lake Construction Group,provided construction project area the contractor would not have had enough management and coordinated 62 subcontractors work space or access for materials storage,requiring and major material suppliers.Over 220 shop drawing additional materials to be stored off site. submittals,80 requests for information(RFIs),10 field orders,and many other clarifications were processed The contractor also streamlined the planning process by through the duration of the project to ensure the plant using Critical Path Management/Scheduling. Knowing was constructed properly and up to industry standard. the critical path and adjusting as needed was essential to proper job planning.The critical path schedule was The contractor conducted extensive pre-construction the primary tool used to manage everything from the planning by investing time with project staff to develop submittal/approval stage to procurement,delivery,and key strategies for construction.For example,they installation. developed an effective strategy for the mass excavation of the structures while creating a"working platform" out of the side of a large hill on site.With the project being located mostly at the top of the hill,surrounded 4 A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Appendix 46 Virtual Rendering Examples _ .a r Retum to Adjust View Rotation ,. Show Brick Show Tilt Wall Adjust Time of Day woo ;a E s 4 Retum to Overhead View A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Appendix 147 VIRTUAL RENDERING EXAMPLES Adjust Time of Day Ill�n` L Return to Floor Plan Overla Adjust View Rotation - Overhead Viwt Show Brick show Tik Wall Plan 0 ii.. RAIII&Ieto ShtMrr lridt Show Tik Wall A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes np.)end'x 48 VIRTUAL RENDERING EXAMPLES 8y Ixh` u,9+, � r � 4 v'{^s 5I e v � w � ea" «ery tsem><o " Adjust Position Along IH94 - _ ,•t. ..., �. _ Show Back Show Tik Wall A Proposal for Design,Bidding,and Construction Administration for a Water Treatment Plant for City of Lino Lakes Appendix 149