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New Directions in Real-Time and Dynamic Control for Combination Rainwater Harvesting and Low Impact Development Management Systems Marcus Quigley  -  Geosyntec  Consultants
[object Object],[object Object],[object Object],[object Object],The Big Picture
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],Control Technology – Where Are We?
Real-Time Tide Gate Retrofit for Salt Mash Restoration Patent # 60/850,600 and 11/869,927
Application Specific Designs ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
 
Harvesting Controller Prototype 5” 7”
Why Should I Consider RTC? ,[object Object],[object Object],[object Object]
Examples of What Can We Accomplish ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
The Tools ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Hydromod
Effective Work Index (W) Range of Geomorphically Significant flows Characteristics of  Bed and Bank Materials  c  bi Stream Flow  c Normal Dry Weather Flow Level
Erosion Potential (Ep) Post-Urban Pre-Urban Work Done Time Shear Stress  c
Concept behind flow duration control standard Pre vs. Post-Development Flow  Flow Bins Frequency (counts) Pre-Development Flows Post-Development Flows Post-Development Flows with  Duration Control  Flow   Bins Frequency (counts) Matching Flow Duration Q c Q c
Flow-Duration Example 1 (Orange County, Gobernadora Canyon)
Flow-Duration Example 2  (Orange County, Chiquita Canyon)
What would be ideal? ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
On-Site CSO and Reuse  and  Combined Detention/Harvesting
Tank Operation Example SCS 10-Year 24-Hour Event
SCS 10-Year 24-Hour Level 4 Retention Storage Level 6 0:00
6:45 Retention Storage Level 4 Level 6 SCS 10-Year 24-Hour
Retention Storage Level 4 Level 6 8:35 SCS 10-Year 24-Hour
Retention Storage Level 4 Level 6 12:00 SCS 10-Year 24-Hour
Retention Storage Level 6 Level 4 13:00 SCS 10-Year 24-Hour
Level 6 Level 4 Retention Storage 18:40 SCS 10-Year 24-Hour
Level 6 Level 4 Retention Storage 21:05 SCS 10-Year 24-Hour
Tank Operation Example “Large” Storm
“ Large” Storm 7/19/1988 12:00 Retention Storage Level 6 Level 4
7/19/1988 20:50 Retention Storage Level 6 Level 4 “ Large” Storm
7/19/1988 22:50 Level 6 Level 4 Retention Storage “ Large” Storm
7/20/1988 2:10 Level 6 Level 4 Retention Storage “ Large” Storm
7/20/1988 7:50 Level 6 Level 4 Retention Storage “ Large” Storm
Tank Operation Example “Small” Storm
“ Small” Storm 3/3/1988 14:20 Level 6 Level 4 Retention Storage
3/3/1988 17:45 Level 6 Level 4 Retention Storage “ Small” Storm
3/3/1988 19:45 Level 6 Level 4 Retention Storage “ Small” Storm
3/3/1988 22:20 Level 6 Level 4 Retention Storage “ Small” Storm
Conventional Harvesting System Detention/Infiltration System Harvesting System Infiltration Roof Runoff Site Impervious Runoff Irrigation Stream
Combination Detention/Infiltration/Harvesting System Infiltration Roof Runoff Site Impervious Runoff Irrigation Stream Controlled Valves Tight Tank
[object Object],[object Object],[object Object],[object Object],Revisiting the Big Picture
New Directions Consumer Behavior Modification Optimization
Ambient Information Systems Goal Information Conveyed to Individual Target Outcomes Reduce Consumptive Use Waste Individual feedback on instantaneous and/or monthly cumulative water use, water pricing data, and/or system demand. Information regarding irrigation consumption best practice based on weather and/or climatic data.  Indicating and alerting individuals to changes in local regulatory actions relative to consumptive use such as irrigation bans.  Reductions in consumptive use and changes in timing of use as a result of feedback and awareness of impacts. Optimize Storm Water Control Usage Information on how to optimize use of storm water controls that require individual participation (e.g., rain barrel, blue roof, or cistern management). Optimal use of Rain Barrels or other controls which require operator control and decision making (e.g., drain or leave full) for volume control in urbanized areas. Reduce CSO Impacts Information regarding receiving water quality and CSO status in combined sewer areas. Consumptive use changes based on direct impacts on receiving waters. These could include but are not limited to timing or other decisions about consumptive use and decisions about waste water quality (e.g., what do I send down the drain at a given time).
 
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ASCE/EWRI LID - Marcus Quigley

  • 1. New Directions in Real-Time and Dynamic Control for Combination Rainwater Harvesting and Low Impact Development Management Systems Marcus Quigley - Geosyntec Consultants
  • 2.
  • 3.
  • 4. Real-Time Tide Gate Retrofit for Salt Mash Restoration Patent # 60/850,600 and 11/869,927
  • 5.
  • 6.  
  • 8.
  • 9.
  • 10.
  • 12. Effective Work Index (W) Range of Geomorphically Significant flows Characteristics of Bed and Bank Materials  c  bi Stream Flow  c Normal Dry Weather Flow Level
  • 13. Erosion Potential (Ep) Post-Urban Pre-Urban Work Done Time Shear Stress  c
  • 14. Concept behind flow duration control standard Pre vs. Post-Development Flow Flow Bins Frequency (counts) Pre-Development Flows Post-Development Flows Post-Development Flows with Duration Control Flow Bins Frequency (counts) Matching Flow Duration Q c Q c
  • 15. Flow-Duration Example 1 (Orange County, Gobernadora Canyon)
  • 16. Flow-Duration Example 2 (Orange County, Chiquita Canyon)
  • 17.
  • 18. On-Site CSO and Reuse and Combined Detention/Harvesting
  • 19. Tank Operation Example SCS 10-Year 24-Hour Event
  • 20. SCS 10-Year 24-Hour Level 4 Retention Storage Level 6 0:00
  • 21. 6:45 Retention Storage Level 4 Level 6 SCS 10-Year 24-Hour
  • 22. Retention Storage Level 4 Level 6 8:35 SCS 10-Year 24-Hour
  • 23. Retention Storage Level 4 Level 6 12:00 SCS 10-Year 24-Hour
  • 24. Retention Storage Level 6 Level 4 13:00 SCS 10-Year 24-Hour
  • 25. Level 6 Level 4 Retention Storage 18:40 SCS 10-Year 24-Hour
  • 26. Level 6 Level 4 Retention Storage 21:05 SCS 10-Year 24-Hour
  • 27. Tank Operation Example “Large” Storm
  • 28. “ Large” Storm 7/19/1988 12:00 Retention Storage Level 6 Level 4
  • 29. 7/19/1988 20:50 Retention Storage Level 6 Level 4 “ Large” Storm
  • 30. 7/19/1988 22:50 Level 6 Level 4 Retention Storage “ Large” Storm
  • 31. 7/20/1988 2:10 Level 6 Level 4 Retention Storage “ Large” Storm
  • 32. 7/20/1988 7:50 Level 6 Level 4 Retention Storage “ Large” Storm
  • 33. Tank Operation Example “Small” Storm
  • 34. “ Small” Storm 3/3/1988 14:20 Level 6 Level 4 Retention Storage
  • 35. 3/3/1988 17:45 Level 6 Level 4 Retention Storage “ Small” Storm
  • 36. 3/3/1988 19:45 Level 6 Level 4 Retention Storage “ Small” Storm
  • 37. 3/3/1988 22:20 Level 6 Level 4 Retention Storage “ Small” Storm
  • 38. Conventional Harvesting System Detention/Infiltration System Harvesting System Infiltration Roof Runoff Site Impervious Runoff Irrigation Stream
  • 39. Combination Detention/Infiltration/Harvesting System Infiltration Roof Runoff Site Impervious Runoff Irrigation Stream Controlled Valves Tight Tank
  • 40.
  • 41. New Directions Consumer Behavior Modification Optimization
  • 42. Ambient Information Systems Goal Information Conveyed to Individual Target Outcomes Reduce Consumptive Use Waste Individual feedback on instantaneous and/or monthly cumulative water use, water pricing data, and/or system demand. Information regarding irrigation consumption best practice based on weather and/or climatic data. Indicating and alerting individuals to changes in local regulatory actions relative to consumptive use such as irrigation bans. Reductions in consumptive use and changes in timing of use as a result of feedback and awareness of impacts. Optimize Storm Water Control Usage Information on how to optimize use of storm water controls that require individual participation (e.g., rain barrel, blue roof, or cistern management). Optimal use of Rain Barrels or other controls which require operator control and decision making (e.g., drain or leave full) for volume control in urbanized areas. Reduce CSO Impacts Information regarding receiving water quality and CSO status in combined sewer areas. Consumptive use changes based on direct impacts on receiving waters. These could include but are not limited to timing or other decisions about consumptive use and decisions about waste water quality (e.g., what do I send down the drain at a given time).
  • 43.