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SMP Sizing in Redevelopment Projects • Scenarios are countless • Tools – Simple method – CN back calculation – Peak Discharge Rate • Chapter 10 Criteria • List of Verified Practices

SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

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Page 1: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

SMP Sizing in Redevelopment Projects

• Scenarios are countless

• Tools– Simple method– CN back calculation– Peak Discharge Rate

• Chapter 10 Criteria

• List of Verified Practices

Page 2: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 3: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

Site Description

• Total area = 4 acres

• Disturbed are = 1 acre

• Impervious area = .6 acre

• Precipitation = 1”

• Storm Type 2

• Justification

• Sizing and SMPs selection– 4 scenarios

Justification

Page 4: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

Bethlehem, NY

• Site information– approximately 29.2% Imp– florist, green houses, parking, planting beds

• Proposed development – 54% impervious – condominium complex, 9 buildings and 4 covered garages

• Constraints– relocating a sanitary sewer– maintaining setbacks

• Proposed practice– CDS units– Underground storage

Page 5: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 6: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

25% Impervious Cover Reduction

Scenario 1•Reconstruction of existing impervious area not exceeding footprint.•Selected Practice: Reduction of Impervious area by 25%•Plan appropriately•Document footprint reduction•Ensure adequate infiltration

•Soil amendment•Decompaction

Page 7: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 8: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

Redevelopment Project with an Existing Detention Pond

Keep the detention pondAddress WQ treatment

Page 9: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 10: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

WQv Calculation -1

Page 11: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

WQv Calculation –2100% Impervious

Reduce upstream drainage and control an area that is all impervious.

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Page 12: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

WQv Calculation –3Rv Constant

Page 13: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

25% Standard practice

Scenario 2•Reconstruction of existing impervious area not exceeding footprint.•Selected Practice: Infiltration Trench•Calc. WQv x 25%•Locate sub-catchment & diversion structure• Check feasibility & limitations•Document maintenance plan, etc.

Page 14: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

Site DescriptionEddy Greenhouses

• Nursing facility in Cohoes• Area encompass 22 acres• Northwestern portion of the property undeveloped

(wetlands)• Remainder is buildings and parking areas• Existing impervious area 8.29 acres• Proposed construction 16 Greenhouses

– New construction 7.8 acres– Reconstruction 6.17 acres

Page 15: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 16: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

Redevelopment Project with an Existing Detention Pond

May modify the pond to meet pond design standards

Page 17: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

Redevelopment Project with Increased Footprint

Page 18: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 19: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

Proposed PlanEddy Greenhouses

• Reduce impervious area by 25%• Design a P-1 Pond• Maintain existing water quantity controls in pond• Provide treatment for all the new disturbance• Provide treatment for a portion of the existing

imperviousness• Allow sheet flow for ½ of the site that did not have

detention in existing condition• Did not restore soil property• Increase HSG for new pervious area

Page 20: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

75% Alternative practice

Scenario 3•Reconstruction of existing impervious area not exceeding footprint.•Selected Practice: Hydrodynamic System•Back calc. CN

•If only imp. Connected, CN = 98•Define flow rate•Locate sub-catchment, flow splitter•Look up the corresponding model from table 1•Check all the requirements for suitability of the practice, feasibility, limitations (head, soil, separation distance, etc.)•Document calculation method, manufacturer’s recommendation, maintenance plan, etc.

Page 21: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

Redevelopment Project with Increased Footprint

Page 22: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 23: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 24: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 25: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

Inputs Parameter Redevelop. UnitsNew Construction

Site Acreage A 2 acres 0.5

Impervious Area IA 1.5 acres 0.5

Impervious Cover% I 75 % 100

Runoff Coefficient Rv=.05+.009*I 0.73 constant 0.95

Min. Rv Rv 0.2 constant 0.2

90% Rainfall P 1 inches 1

Water Quality Volume WQv = [PRvA]/12 0.1216667 Acre-Feet 0.0395833

    5299.8 ft^3 1724.25

Alternative Practice, sized to 75% of WQv, define priority areas that generate a runoff volume equivalent to the target WQv. Rv constant. 0.75 3974.85 Total (ft^3) 5699.1

Page 26: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 27: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

EquationsWQv = [PRvA]/12Rv=.05+.009*I

I = imperviousness

P= precipitation (inch)

A= area

Page 28: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 29: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 30: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 31: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

CN Back-CalculationPeak Discharge Rate

Page 32: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 33: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

http://www.dec.ny.gov/chemical/29089.html

Page 34: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

Hydrodynamic SystemsVortechs System

http://www.dec.ny.gov/chemical/29089.html

Page 35: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 36: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

Hydrodynamic Systems

Page 37: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

WQv VSM + VDL + (DP x ARG)

 VSM = ARG x DSM x nSM

 VDL (optional) = ARG x DDL x nDL

 where:VSM = volume of the soil media [cubic feet]

VDL = volume of the drainage layer [cubic feet]

ARG = rain garden surface area [square feet]

DSM= depth of the soil media, typically 1.0 to 1.5 feet [feet]

DDL = depth of the drainage layer, typically .05 to 1.0 feet [feet]

DP = depth of ponding above surface, maximum 0.5 feet [feet]

nSM = porosity of the soil media (≥20%)

nDL = porosity of the drainage layer (≥40%)

WQv= Water Quality Volume [cubic feet], as defined in Chapter 4 of the New York Stormwater Management Design Manual

Alternative PracticesRain Garden

Page 38: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of
Page 39: SMP Sizing in Redevelopment Projects Scenarios are countless Tools –Simple method –CN back calculation –Peak Discharge Rate Chapter 10 Criteria List of

Redevelopment Project with Increased Footprint