Using Green Infrastructure To Protect Water Quality

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1 Using Green Infrastructure To Protect Water Quality Green Infrastructure for Revitalization

2 West Union Iowa s Green Street Pilot Project Green Pilot Streetscape Project A Sustainable Vision for West Union The City of West Union Main Street West Union Iowa Department of Economic Development

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14 Charles City, Iowa

15 Oelwein, Iowa

16 CONSERVATION Portland, Oregon DESIGN FORUM

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20 Stormwater Materials Street Permeable Paver: Eco-Optilock Sidewalk Permeable Paver: Eco-Prioria Bioretention Areas

21 Street Section

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29 Summary of Results Pre-Project Post-Project % Reduction Threshold Event 0.05" 1" - 2-Year Event (2.91" rain) Runoff Volume (inches) % Peak Flow (cfs) % 10-Year Event (4.31" rain) Runoff Volume (inches) % Peak Flow (cfs) % 100-Year Event (6.36" rain) Runoff Volume (inches) % Peak Flow (cfs) %

30 Carbon Cliff Permeable Streets

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41 Charles City, Iowa

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43 2-Year Event STATE STREET 1 st STREET Pond Elevation CFS 17.1 CFS 2.9 CFS 13.0 CFS Permeable Paving Flows Storm Sewer Flows 0.97 CFS 11.1 CFS 0.31 CFS 5.4 CFS 2 nd STREET 3 rd STREET 0.64 CFS 7.4 CFS 4 th STREET 5 th STREET 6 th STREET

44 100-Year Event 3.1 CFS 9.3 CFS STATE STREET 1 st STREET 2 nd STREET 3 rd STREET POND ELEVATION CFS CFS 40.2 CFS 79.3 CFS Permeable Paving Flows Storm Sewer Flows 21.6 CFS 64.4 CFS 13.4 CFS 42.3 CFS 4 th STREET 5 th STREET 6 th STREET

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46 Proposed Phase 3

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49 AMCOL Headquarters Green Infrastructure for Revitalization

50 AMCOL Headquarters Hoffman Estates, IL Green Infrastructure for Revitalization

51 Green Infrastructure for Revitalization

52 Green Infrastructure for Revitalization

53 Green Infrastructure for Revitalization

54 Green Infrastructure for Revitalization

55 Green Infrastructure for Revitalization

56 Green Infrastructure for Revitalization

57 Green Infrastructure for Revitalization

58 Green Infrastructure for Revitalization

59 Carol Stream Park District: LEED Silver Recreation Center Green Infrastructure for Revitalization

60 Green Infrastructure for Revitalization

61 Site Plan Green Infrastructure for Revitalization

62 Engineering and Science Based Approach Green Infrastructure for Revitalization

63 Site Objectives LEED Sustainable Sites Highest Environmental Performance Reduced Irrigation Increased Longevity Cost Effective Green Infrastructure for Revitalization

64 Green Infrastructure for Revitalization

65 Green Infrastructure for Revitalization

66 Construction Green Infrastructure for Revitalization

67 Green Infrastructure for Revitalization

68 Environmental Performance 2-Year Runoff Rate Reduction = 95% 2-Year Runoff Volume Reduction = 70% Sediment Load Reduction = 90% Metals Load Reduction = 90% Phosphorous Load Reduction = 65% Potential Deicing Salt Reduction = 75% Elimination of Asphalt Sealants Reduced Irrigation Demand Green Infrastructure for Revitalization

69 Economic Considerations Cost: ~24% premium for permeable paving system but 11 year ROI Longevity: 50 year pavement life Safety: Reduced nuisance ponding & icing Space efficiency: Integration of stormwater & landscape Water Efficiency: Reduced Irrigation Aesthetics: Brick paving, lush landscapes Environmental performance improvements Green Infrastructure for Revitalization

70 DuPage County Water Quality Improvement Program Grant Reduces Pollutants of Concern Reduces Non-Point Source Pollution Reduces Streambank Erosion Restores Pre-Development Hydrology Educates Community Leaders & Citizens Grant = $117,133 (20% of expenses) Green Infrastructure for Revitalization

71 Lost Valley Visitors Center in Glacial Park US Green Building Council 15 August 2013

72 Design Implementation Sustainable Sites LOST VALLEY D. Sustainable Site Practices 1. Replicate natural hydrology on all land use surfaces through the integration of highperformance green infrastructure strategies for multiple, stacked benefits: a. Porous pavement b. Bio-retention c. Native landscapes

73 LOST VALLEY Design Implementation Sustainable Sites

74 Design Implementation Sustainable Sites LOST VALLEY a. Porous Pavement- Interlocking Concrete Unit Pavement System i. Slows, cools, cleanses, and infiltrates rainwater ii. Durable, longer-lasting iii. Reduced maintenance costs iv. Improved winter-time characteristics v. Traffic calming vi. Aesthetic characteristics vii. Educational opportunities

75 Design Implementation Sustainable Sites LOST VALLEY Permeable Paving

76 LOST VALLEY Design Implementation Sustainable Sites

77 Design Implementation Sustainable Sites LOST VALLEY Porous Pavement

78 Design Implementation Sustainable Sites LOST VALLEY Before After

79 Design Implementation Sustainable Sites LOST VALLEY b. Bioretention - Rain Gardens and Bioswales i. Slows, cools, cleanses, and infiltrates rainwater ii. Improves biodiversity iii. Reinforces native landscape character iv. Educational opportunities

80 LOST VALLEY Design Implementation Sustainable Sites

81 LOST VALLEY Design Implementation Sustainable Sites

82 LOST VALLEY Design Implementation Sustainable Sites

83 Design Implementation Sustainable Sites LOST VALLEY 2. Detention / Evaporation a. Adaptive re-use of pool b. Slows, cools, cleanses, and infiltrates rainwater c. Expands usable, programmable outdoor space

84 Design Implementation Sustainable Sites LOST VALLEY Detention / Evaporation

85 Design Implementation Sustainable Sites LOST VALLEY Detention / Evaporation

86 Design Implementation Sustainable Sites LOST VALLEY Make all water a visible element

87 LOST VALLEY Water Management Plan

88 LOST VALLEY Water Management Plan

89 Design Implementation Sustainable Sites LOST VALLEY Project Performance

90 Design Implementation Sustainable Sites LOST VALLEY 3. Native Landscapes Adapted prairie grasses and forb species a. Slows, cools, cleanses, and infiltrates rainwater b. Improves biodiversity c. Reinforces authentic landscape character d. Improves habitat e. Educational opportunities

91 Design Implementation Sustainable Sites LOST VALLEY Native Landscapes Before

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