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Camanche Reservoir Water Treatment Plant

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Iron, Manganese and Hydrogen Sulfide Removal. Average day water demand. 0.21 MGD ... Emergency power generator. Sewer and potable pipelines. Drop in pressure ... – PowerPoint PPT presentation

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Title: Camanche Reservoir Water Treatment Plant


1
Camanche Reservoir Water Treatment Plant
Cornerstone Engineering Group The Foundation for
Your Civil Engineering Needs
Camanche Reservoir South Shore (CASS) Camanche
Reservoir North Shore (CANS)
  • Cecilia Zamora
  • Evangelina Reyes
  • Kathryn Garcia
  • Michael Bockrath

2
Overview
  • Background
  • Problem Statement
  • Design
  • Scheduling
  • Conclusion

3
Background
Existing Proposed
4
Background (continued)
  • CASS Water Treatment Plant
  • Surface Water Source
  • Conventional Treatment
  • Average day water demand
  • 0.17 MGD (July 2002)
  • 2 Storage Tanks
  • 210,000 gallons each
  • Manually Controlled

5
Background (continued)
  • CANS Water Treatment Plant
  • Groundwater Source
  • Iron, Manganese and Hydrogen Sulfide Removal
  • Average day water demand
  • 0.21 MGD (July 2002)
  • 2 Storage tanks
  • 140,000 gallons each
  • Manually Controlled

6
Overview
  • Background
  • Problem Statement
  • Design
  • Scheduling
  • Conclusion

7
Problem Statement
  • CASS Water Treatment Plant
  • Tanks and filters
  • Emergency power generator
  • Sewer and potable pipelines
  • Drop in pressure
  • Contamination of distribution system
  • Current Capacity
  • 0.7 Million Gallons Per Day
  • High OM cost

8
Problem Statement (continued)
  • CANS Water Treatment Plant (WTP)
  • High hydrogen sulfide concentration
  • Taste and odor
  • New groundwater rule
  • Current Capacity
  • 0.3 Million Gallons Per Day (MGD)
  • High OM cost

9
Overview
  • Background
  • Problem Statement
  • Design
  • Scheduling
  • Conclusion

10
Design
  • Objectives
  • Single WTP
  • Serving both CASS and CANS
  • Minimum Capacity
  • 1 MGD
  • Expandable
  • Water quality regulations
  • Current and Future
  • Reduce OM cost

11
Design (continued)
  • Scope
  • Existing conditions
  • Regulations
  • Alternatives
  • Analysis
  • Environmental
  • Sustainability
  • Calculations, specifications, and drawings

12
Design (continued)
  • Alternatives
  • No Build Option
  • Existing Plant Upgrades
  • New Consolidated Plant
  • Systems

13
Overview
  • Background
  • Problem Statement
  • Design
  • Scheduling
  • Conclusion

14
Scheduling
  • Allocation of time
  • Research Phase
  • Watershed survey
  • Existing facility
  • Environmental assessment
  • Design alternatives
  • Design Phase

15
Scheduling (continued)
  • Milestones
  • Acceptance of proposal
  • Selection of optimal system
  • Design of facility
  • Submittal of final design

16
Overview
  • Background
  • Problem Statement
  • Design
  • Scheduling
  • Conclusion

17
Conclusion
  • Alternatives
  • Regulations
  • Schedule
  • Budget

18
Questions
  • ?
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