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![Page 1: Chesapeake Bay Stormwater Training Partnership1 WEBCAST: West Virginia Municipal Separate Storm Sewer System Permit July 13, 2010.](https://reader038.fdocuments.in/reader038/viewer/2022103112/551b6419550346ae7a8b5c55/html5/thumbnails/1.jpg)
Chesapeake Bay Stormwater Training Partnership 1
WEBCAST:West Virginia Municipal Separate
Storm Sewer System Permit
July 13, 2010
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http://www.cwp.org/cbstp
Created to deliver targeted training on new tools and practices to improve the quality of stormwater runoff.
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Welcome to the Webcast: To Ask a Question – The lower left-hand corner of the
screen contains a chat box. Click on the “Private” tab and then on “Leaders and Assistants”. Place your cursor in the chat box to type your question and click on the arrow to submit it. We will try to answer as many questions as possible during the webcast.
To Answer a Poll Question – Polling questions will appear throughout the webcast. To answer a poll question, click on the radio button to the left of your answer and click submit. Do not type your answer in the chat box.
To Adjust How the Slides Appear on Your Screen – On the top of your screen, click on the small down arrow next to the button that looks like Scroll down to “Zoom” and click on “Auto Fit.”
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Welcome to the Webcast To Complete the Webcast Survey – After the
webcast, we will have a short multiple choice survey to get feedback on your experience. Please take a few minutes to fill the survey out so we can identify areas for improvement.
Continuing Education Credits (CEC’s) – We are offering CEC’s) as described in the VA professional licensing regulations, or Professional Development Hours (PDH’s) as described in the WV licensing regulations. The Partnership will provide Certificates of Completion that provide the description and duration of the training event to all attendees for whom we have email addresses.
Resources – After the webcast, we will email a resources sheet, speaker contact information, and the presentation.
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Chesapeake Bay Stormwater Training Partnership 5
Webcast Team
David Hirschman, CWP Julie Schneider, CWP Joe Battiata, CWP
Sherry Wilkins, WV DEP Jeremiah JohnsonCity of Beckley, WV
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Chesapeake Bay Stormwater Training Partnership 6
Webcast Overview
West Virginia’s MS4 Permit (Sherry Wilkins)
Watershed Protection Elements (Julie Schneider)
Site and Neighborhood Design Performance Standards (Joe Battiata)
Local Implementation (Jeremiah Johnson)
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Chesapeake Bay Stormwater Training Partnership 7
WEST VIRGINIA’S SMALL MS4 PERMIT
An OVERVIEW
Sherry WilkinsMS4 program coordinator for the WV DEP
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Chesapeake Bay Stormwater Training Partnership 8
West Virginia’s small MS4 permit
Issued on June 22, 2009
Applies to all regulated small MS4s in the State (WV does not have any medium or large MS4’s)
Includes two transportation agencies, four universities, one correctional institution
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Chesapeake Bay Stormwater Training Partnership 9
WV’s permit contains six minimum control measures as required by Federal Rule;
1. Public Education & Outreach2. Public Involvement 3. Illicit Discharge Detection & Elimination4. Construction Site Runoff Control5. Controlling Runoff from New Development6. Pollution Prevention & Good Housekeeping
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Chesapeake Bay Stormwater Training Partnership 10
5. Controlling Runoff from New Development and Redevelopment
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Controlling Runoff from New and Redevelopment
Watershed Protection Elements• These are elements that will be incorporated into a
subdivision ordinance and other applicable policy documents. These could include comprehensive or master plans, general land use plan, zoning code, unified development code, or other documents as appropriate.
Site and Neighborhood DesignThese are site design standards – applicable to new development and redevelopment. There are no provisions in the permit to retrofit existing development.
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Watershed Protection Elements
Minimize the amount of impervious surfaces.
Preserve and protect ecologically sensitive areas ie: riparian corridors, headwaters, floodplains and wetlands
Implement stormwater management practices
that reduce thermal impacts to streams
Avoid hydromodification
Implement tree protection standards
Implement policies to protect native soils
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Watershed Protection Element – Minimize the amount of impervious surfaces.
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Chesapeake Bay Stormwater Training Partnership 14
Site and Neighborhood Design
A. Performance StandardsB. Plan Review, Approval and EnforcementC. Maintenance AgreementsD. Inventory and Tracking of Management
PracticesE. Stormwater BMP InspectionsF. Reporting
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Site and Neighborhood Design
Site design standards require the management of the first one inch of rainfall from a 24 – hour storm preceded by 48 hours of no measurable precipitation. Runoff volume can be achieved by canopy interception, soil amendments, evaporation, rainfall reuse, engineered infiltration, extended filtration and/or evapotranspiration.
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Bioretention, rain tanks or cisterns, permeable pavement, soil amendments, roof top disconnections, dry swales, grass channels, green roofs and any practice that will infiltrate, reuse or evapotranspire runoff.
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The first one inch of rainfall must be managed on site with no discharge to surface water
except….
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…When using extended filtration practices
Bioretention with an underdrain, which must be designed to capture one inch of rainfall.
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Chesapeake Bay Stormwater Training Partnership 19
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Extended Filtration orBioretention with underdrain
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Incentives – Desirable development
RedevelopmentBrownfield redevelopmentHigh density (>7 units per acre)Vertical density, (FAR of 2 or >18 units per
acre)Mixed use and transit oriented
development
For each type of development, a 0.2” reduction is available, up to a reduction totaling no more than 0.75”
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Other Options
When site conditions are unfavorable, mitigation and/or fee in lieu is available.
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Schedule of Implementation
MS4’s will have four years to begin implementation of the site and neighborhood design provisions.
Provides time to modify ordinances that support the one inch site design performance standard.
Provides time for demonstration projects
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Chesapeake Bay Stormwater Training Partnership 24
Maximum Extent Practicable
What is MEP?
MEP standard is not a ‘low standard’
Section 402(p)(3)(B)(iii): “…Permits for discharges from municipal storm sewers…shall require controls to reduce the discharge of pollutants to the maximum extent practicable, including management practices, control techniques and system, design and engineering methods, and such other provisions as the Administrator or the State determines appropriate for the control of such pollutants.”
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Discharge to impaired waters?
If 303(d) - Must document in the SWMP how the chosen BMP’s will control the pollutant of concern.
If TMDL with an assigned wasteload allocation, then must include BMP’s specifically targeted to achieve the WLA. Must have a monitoring component.
Resources: “Evaluating the Effectiveness of Municipal Stormwater Program” and “Understanding Impaired Waters and TMDL requirements for Municipal Stormwater Programs”
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Partnering
Encourage MS4 to partner and work together to accomplish the goals of the permit.
Nested or adjacent MS4’s Discharge into shared waterbodies Development of public outreach campaigns
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Goal:Clean water!
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Q&A
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Watershed Protection Elements (Part 2C5.i.A.)
1. Minimize Impervious surfaces2. Preserve, protect, create and restore
ecologically sensitive areas3. Prevent or reduce thermal impacts to
streams4. Avoid or prevent hydromodification of
streams and other waterbodies5. Protect trees and other vegetation6. Protect native soils
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(1) Minimize Impervious Surfaces Are residential street widths reduced to support:
• Travel lanes, on-street parking• Emergency & service vehicles• Based on traffic volume
Is the use of cul-de-sacs minimized through:• Reduce radius• Use alternative turnarounds
Are parking lots designed efficiently to:• Reduce parking ratios• Use of pervious pavement for overflow parking
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Not So Good
Good
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(2) Preserve, protect, create and restore ecologically sensitive areas
Is there a stream buffer ordinance that:• Includes headwater and perennial streams• Includes wetlands, 100 yr floodplain, steep
slopes• Defines allowable/nonallowable uses• Ensures long term maintenance
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Good
Not So Good
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(3) Prevent or reduce thermal impacts to streams
Are practices being used to disconnect impervious cover?
Residential• Rain gardens• Rain barrels/cisterns (rainwater harvesting)• French drains• Downspout flow to yard
Parking lot:• Planting trees• Bioretention islands
Require stream buffers
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Parking LotResidential
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(4) Avoid or prevent hydromodification of streams and other waterbodies
Do the local stream buffer ordinances prohibit piping, filling, and burying of streams?
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(5) Protect trees and other vegetation
Does the tree protection ordinance include:• Conserving trees on site• Protecting drip-line• Marking trees to protect on site plan and in the
field
Does the landscape ordinance require protection and planting of trees?
Are trees incorporated in stormwater management practices?
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Dry pond planted with trees
Trees protected on site
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(6) Protect native soils, prevent topsoil stripping, and prevent compaction of soils
Do local ESC & grading ordinances:
• Minimize disturbance through site fingerprinting
• Protect soils for infiltration
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Photo Copyright 1999, Center for Watershed Protection
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Resources
Codes and Ordinances Worksheet (COW)
www.cwp.org
EPA Water Quality Scorecardhttp://cfpub.epa.gov/npdes/
greeninfrastructure/munichandbook.cfm
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Part IIC. Stormwater Management Program for small
MS4s
5. Minimum Control Measure: Controlling Runoff from New Development and Redevelopment;
a. Long Term Stormwater Controls;
ii. Site and Neighborhood Design;
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Watershed Protection: Address impacts associated with watershed scale management decisions;
Site and Neighborhood Design: Address impacts associated with individual site plan development.
Long Term Stormwater Controls:
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Site and Neighborhood Design:
All development projects disturbing one acre or greater (or < 1 acre and part of a larger common plan of development) must control stormwater discharge:
• rates, • volumes, • velocities, • Durations; and • temperatures
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Simple Discharge Hydrographs
-2
0
2
4
6
8
10
12
14
16
0 5 10 15 20 25 30
Ru
no
ff
Time
Post-developed with Detention
Post-developed
Pre-developed
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Evidence of impacts to receiving aquatic resources are very telling:
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A. Performance Standards
1. Site design standards that require management measures that keep and manage on site the first one-inch of rainfall from a 24-hr storm (preceded by 48 hours of no measureable precipitation).
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90th Percentile Storm Event
0
1
2
3
4
5
6
7
8
9
10
0% 10% 20% 30% 40% 50% 60% 70% 80% 90% 100%
Percentile
Ra
infa
ll D
ep
th [
inc
he
s]
Based on the analysis of precipitation data for West Virginia
90% of the 24 hour (or less) rainfall events are one inch or less.
Inflection Point
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A. Performance Standards (contd.)
Runoff volume reduction can be achieved by • canopy interception; • soil amendments; • evaporation; • rainfall harvesting & reuse; • engineered infiltration; • extended filtration; • evapotranspiration; or • any combination of the practices above.
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Specific practices include:
A. Performance Standards (contd.)
dry swales; bioretention; rain tanks and
cisterns; soil amendments; roof top/impervious
disconnections;
permeable pavement; porous concrete; permeable pavers; Reforestation; grass channels; green roofs;
Effective implementation of Watershed Protection Elements 1 though 6 provide a direct benefit in the number and size of stormwater practices
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Runoff Reduction Processes
Runoff Reduction is not just infiltration!InfiltrationCanopy Interception EvaporationTranspiration Rainwater Harvesting Extended Filtration
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Inflow V. Outflow Rates
0
0.01
0.02
0.03
0.04
0.05
0.06
0.07
0.08
0.09
0.1
1/13/2005 12:00 1/14/2005 0:00 1/14/2005 12:00 1/15/2005 0:00 1/15/2005 12:00 1/16/2005 0:00
Dis
char
ge
(cfs
)
0
0.2
0.4
0.6
0.8
1
1.2
Dep
th (
in)
Inflow
Outflow
CumulativeRainfall
Source: Dr. William Hunt, North Carolina State University
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Chesapeake Bay Stormwater Training Partnership 54
Stormwater Practices Differ Sharply in Ability to Reduce Runoff Volume
Bioretention, Infiltration, Dry Swales and Related Practices Reduce Runoff Volumes by 50 to 90%
Wet Ponds, ED Ponds and Constructed Wetlands and Filters Reduce Runoff Volumes by zero to 10%
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Chesapeake Bay Stormwater Training Partnership 55
Reported Reductions in Runoff Volume
Losses Due to Exfiltration, Evapotranspiration and Post Storm Delivery
CT: 99%UK: 58% FL: 98%NC: 30 to 65% (4)PA: 80%Aus: 73%WA: 96%MD: 46 to 54%
Key Factors: Infiltration Rate, Media Depth, Hydraulic Gradient and Absence of Underdrain
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A. Performance Standards (contd.)
Rooftop Disconnection
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A. Performance Standards (contd.)
Soil Amendments
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Chesapeake Bay Stormwater Training Partnership 58
A. Performance Standards (contd.)
Extended filtration practices that are designed to capture and retain up to one inch of rainfall may discharge volume in excess of the first inch through an under drain system.
Bioretention
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Chesapeake Bay Stormwater Training Partnership 59
A. Performance Standards (contd.)
Infiltration
Permeable Pavement
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Chesapeake Bay Stormwater Training Partnership 60
A. Performance Standards (contd.)
Dry Swale
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Chesapeake Bay Stormwater Training Partnership 61
A. Performance Standards (contd.)
Vegetated Roof
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Chesapeake Bay Stormwater Training Partnership 62
A. Performance Standards (contd.)
Rainwater Harvesting & Reuse
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Chesapeake Bay Stormwater Training Partnership 63
A. Performance Standards (contd.)
Impervious Disconnectionto Grass Channel
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Chesapeake Bay Stormwater Training Partnership 64
Compliance with the Performance Standard:
Design SpecificationsCompliance Tool:
West Virginia MS4 Stormwater Compliance Spreadsheet
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Chesapeake Bay Stormwater Training Partnership 66
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Chesapeake Bay Stormwater Training Partnership 67
West Virginia DEP Presents:
Contact :Michelle Finney [email protected]: 304-926-0499, ext. #1047
August 17th & 18th in Huntington, WV.
September 28th & 29th in Bridgeport, WV.
MS4 Stormwater Compliance & Design Workshops
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Chesapeake Bay Stormwater Training Partnership 68
Site and Neighborhood Design Additional Water Quality Requirements:
Hot Spots: activities/operations with demonstrable potential for pollutant loadings.
Activities such as:Automobile service stations; Lawn care, greenhouse, or nursury
operations that handle bulk fertilizers and pesticides; and
operations that handle chemicals.
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Chesapeake Bay Stormwater Training Partnership 69
Stormwater HotspotsThe permittee should implement via
enforceable requirements within their jurisdiction requirements for water quality treatment for pollutants of concern prior to infiltration measures.
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Chesapeake Bay Stormwater Training Partnership 70
Stormwater Hotspots
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Chesapeake Bay Stormwater Training Partnership 71
Watershed Scale Credits Incentives and/or credits for certain types of
development:
a) Redevelopment
b) Brownfield redevelopment
c) High Density (>7 units/ac)
d) Vertical Density (FAR of 2; or > 18 units/ac)
e) Mixed use and Transit oriented development
A reduction of 0.2” from the 1” rainfall treatment standard;
Reductions are additive, up to a maximum of 0.75 inches (resulting in 0.25” treatment requirement)
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Chesapeake Bay Stormwater Training Partnership 72
Offsite Alternatives
For projects that cannot meet 100% of the treatment requirement:
Offsite mitigationPayment in lieu
These options are managed and implemented by the MS4 and can be applied as follows:
up to 0.6” of the treatment requirement;At a 1.5:1 and
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Chesapeake Bay Stormwater Training Partnership 73
Q&A
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Chesapeake Bay Stormwater Training Partnership 74
Will It Work?: The Challenge of Local Implementation
Jeremiah Johnson, CPSWQBeckley, WV Sanitary Board
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Chesapeake Bay Stormwater Training Partnership 75
Permits & Regulations tend to be developed with a perfect world in mind;
It’s never that simple when implementing
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Chesapeake Bay Stormwater Training Partnership 76
Local MS4 Implementation: Solving the Problems of an Imperfect World
Will the Permit Work? How do I make it work?
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Chesapeake Bay Stormwater Training Partnership 77
Local Insights to Implementation:Programmatic/Policy Challenges
• Perspective from building a local SW program from ground up
• Experience working with local developers/designers
Site Level Lessons Learned• Case Studies of Local Green Infrastructure• Constant Learning Process
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Chesapeake Bay Stormwater Training Partnership 78
Beckley, WV Background Phase II MS4 17,000 residents in
City/80,000 residents in county
Economic hub of Southern WV – Crossroads of I-77 & I-64
Streams discharge to New River National River watershed
Our MS4 boundary uses watershed approach
19 square miles• ½ in corporate limits• ½ outside
Formed a stormwater utility in 2007• $3.75/ERU or
$1.25/1,000 sq ft• ~$1 million revenue
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Chesapeake Bay Stormwater Training Partnership 79
Watershed Elements & Neighborhood Design Implementation Policy Challenges in WV:
Existing local subdivision, zoning, and other land-use/development ordinances are weak; [Not just tweaking existing ordinances ]
Local officials are not moving quickly (relative to a 4-year schedule) to update or improve the local ordinances [Who will be the local champion];
Lack of local technical capacity/staff expertise in urban/rural land planning
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Chesapeake Bay Stormwater Training Partnership 80
Local Program Capacity
6 Minimum Control Measures• Cross-division/
operational communication and coordination– Public Affairs– Educator– Legal Expertise– Accountant– Biologist– Engineer– Inspectors– etc.
In WV, reality is:• An Army of One, or• A Few Good Men/
Women How do we overcome
need for human capital?• Local Investment• Funding Source• Collaboration to share
costs
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Chesapeake Bay Stormwater Training Partnership 81
Post Construction Requirements: Will It Work?
There are numerous examples of sites in the WV mountains where the 1” capture will be challenging (geology, slope, soils?)
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Chesapeake Bay Stormwater Training Partnership 82
Site Development: 1” Capture
Overcoming Site Constraints
From the Plans to the ground
Solving green infrastructure supply and
demand issues
• Design
• Vendors
• Builders
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Chesapeake Bay Stormwater Training Partnership 83
Overcoming Site Constraints
Varied conditions across the US;
In WV• Mountains• Rock• Historic Mining Impacts
In Beckley – Sprawl – Commercial Development
exists on refuse/slate dump
– Skelton Mine Complex
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Chesapeake Bay Stormwater Training Partnership 84
From the Plans to the Ground
How do design specifications, plan review, and inspections account for the real world conditions?
State Stormwater Manual• Adaptive management (buy in and on-the-
ground feedback). Technical Assistance
• State MS4 WorkshopsResearch
• Across the US• In WV?
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Chesapeake Bay Stormwater Training Partnership 85
Lessons Learned from Early Adoption
Exhibition Coal Mine Raingarden
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Chesapeake Bay Stormwater Training Partnership 86
Lessons Learned from Early Adoption
Redevelopment = Retrofit
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Chesapeake Bay Stormwater Training Partnership 87
Lessons Learned from Early Adoption
Underdrains – Our Insurance Policy
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Chesapeake Bay Stormwater Training Partnership 88
Lessons: Partnerships
Participation from Volunteer Groups
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Chesapeake Bay Stormwater Training Partnership 89
Lessons: Valued PartnershipsUSDA-ARS
Appalachian Farming Systems Lab• Turfgrass Research• Constructed Soils
Local Source Biofilter Media
Ongoing research cooperative agreement
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Chesapeake Bay Stormwater Training Partnership 90
Lessons Learned from Early Adoption
Exhibition Coal Mine Grass Swale
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Chesapeake Bay Stormwater Training Partnership 91
Lessons Learned from Early Adoption
Planning for Living Systems
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Chesapeake Bay Stormwater Training Partnership 92
Lessons Learned from Early Adoption
Mixed Land Use making a retroFIT
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Chesapeake Bay Stormwater Training Partnership 93
Lessons Learned from Early Adoption
Howe St. Parking Lot Redevelopment
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Chesapeake Bay Stormwater Training Partnership 94
Pervious Concrete vs Bioretention
View of Parking onto Howe St. (Note grade of the street and slope of lot entry)
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Chesapeake Bay Stormwater Training Partnership 95
Bioretention chosen & then . . .
Photo of site conditions – solid rock at 6”.
Modified design into an urban biofilter planter
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Chesapeake Bay Stormwater Training Partnership 96
Planters under construction
Tiered planter cells with terraced overflow weir.
Lower cell outlets via a curbcut.
Planters have perforated underdrains.
Underdrains outlet to a new separate storm sewer
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Chesapeake Bay Stormwater Training Partnership 97
Bioretention Planter at capacity
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Chesapeake Bay Stormwater Training Partnership 98
Lessons Learned from Early Adoption
Howe St. Parking Lot Redevelopment
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Chesapeake Bay Stormwater Training Partnership 99
Lessons Learned from Early Adoption
Howe St. Parking Lot Redevelopment
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Chesapeake Bay Stormwater Training Partnership 100
In the Works
Beckley BIG project• 5 acre downtown redevelopment• 3 bioswales• Over 1 acre greenspace creation
Roberts St Green Infrastructure• Bioretention cells• Overflow subsurface rainwater storage
9 other green infrastructure projects Obstacles for private developmentGreen Infrastructure Supply/Demand
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Chesapeake Bay Stormwater Training Partnership 101
Q&A
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Chesapeake Bay Stormwater Training Partnership 102
Webcast Wrap-UP Webcast Archive – We will be archiving this webcast
and placing it on the CBSTP website. Look for the archive to be posted shortly.
Continuing Education Credits (CEC’s) – We are offering CEC’s) as described in the VA professional licensing regulations, or Professional Development Hours (PDH’s) as described in the WV licensing regulations. The Partnership will provide Certificates of Completion that provide the description and duration of the training event to all attendees for whom we have email addresses.
Resources – After the webcast, we will email a resources sheet, speaker contact information, and the presentation.
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Chesapeake Bay Stormwater Training Partnership 103
Upcoming 2010 Webcasts
September 1 Permeable Pavement Design, Installation, and Maintenance *
October 20 Rooftop Disconnection, Filter Strips & Rainwater Harvesting *
* Register at http://www.cwp.org/CBSTP