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Erschienen in: Water Resources Management 9/2017

08.04.2017

Optimization Models for the Design of Vegetative Filter Strips for Stormwater Runoff and Sediment Control

verfasst von: Puneet Khatavkar, Larry W. Mays

Erschienen in: Water Resources Management | Ausgabe 9/2017

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Abstract

Vegetative filter strips (VFS) are an effective methodology for runoff management and control of sediment flow and soil erosion, particularly for large urban parking lots, and for irrigation water management. An optimization model for the design of vegetative filter strips for runoff management, that minimizes the amount of land required for the strips, is developed herein. The resulting optimization model is based upon the kinematic wave equation for overland sheet flow along with equations defining the cumulative infiltration and infiltration rate. The nonlinear programming (NLP) optimization model has been applied using the General Algebraic Modeling System (GAMS). The runoff management model is extended for the control of sediment. These new models provide flexibility for site-specific conditions and are a step forward in the development of new design methodologies for stormwater and irrigation flow management. The optimization models have been applied using a sensitivity analysis of parameters such as different soil types, rainfall characteristics etc., performed to validate the model. Results of the example model applications indicate the usefulness of the models for practical applications in the field. To our knowledge this is the first optimization model developed for the design of vegetative filter strips for runoff and sediment control.

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Literatur
Zurück zum Zitat Akan A (2014) Hydrologic modeling of urban vegetative filter strips. JHydrolEng 19(1):188–195 Akan A (2014) Hydrologic modeling of urban vegetative filter strips. JHydrolEng 19(1):188–195
Zurück zum Zitat Al-wadaey A, Wortmann CS, Franti TG, Shapiro CA, Eisenhauer DE (2012) Effectiveness of grass filters in reducing phosphorus and sediment runoff. Water Air Soil Pollut 223(9):5865–5875CrossRef Al-wadaey A, Wortmann CS, Franti TG, Shapiro CA, Eisenhauer DE (2012) Effectiveness of grass filters in reducing phosphorus and sediment runoff. Water Air Soil Pollut 223(9):5865–5875CrossRef
Zurück zum Zitat Blanco-Canqui H, Gantzer C, Anderson S, Alberts E, Thompson A (2004) Grass barrier and vegetative filter strip effectiveness in reducing runoff, sediment, nitrogen, and phosphorus loss. Soil Sci Soc Am J 68(5):1670–1678CrossRef Blanco-Canqui H, Gantzer C, Anderson S, Alberts E, Thompson A (2004) Grass barrier and vegetative filter strip effectiveness in reducing runoff, sediment, nitrogen, and phosphorus loss. Soil Sci Soc Am J 68(5):1670–1678CrossRef
Zurück zum Zitat Brooke A, Kendrick D, Meeraus A, Raman R (2005) GAMS, a User’s guide. GAMS Development Corporation, Washington, DC Brooke A, Kendrick D, Meeraus A, Raman R (2005) GAMS, a User’s guide. GAMS Development Corporation, Washington, DC
Zurück zum Zitat Chow VT, Maidment DR, Mays LW (1988) Applied hydrology. McGraw-Hill, New York Chow VT, Maidment DR, Mays LW (1988) Applied hydrology. McGraw-Hill, New York
Zurück zum Zitat Deletic A (2000) Sediment behaviour in overland flow over grassed areas (Doctoral Dissertation, University of Aberdeen) Deletic A (2000) Sediment behaviour in overland flow over grassed areas (Doctoral Dissertation, University of Aberdeen)
Zurück zum Zitat Deletic A (2001) Modelling of water and sediment transport over grassed areas. J Hydrol 248:168–182CrossRef Deletic A (2001) Modelling of water and sediment transport over grassed areas. J Hydrol 248:168–182CrossRef
Zurück zum Zitat Deletic Q,. Fletcher TD (2006) Performance of grass filters used for stormwater treatment - a field and modeling study. Journal of Hydrology 317(3): 261–275. Deletic Q,. Fletcher TD (2006) Performance of grass filters used for stormwater treatment - a field and modeling study. Journal of Hydrology 317(3): 261–275.
Zurück zum Zitat Deletic A, Ashley R, Rest D (2000) Modelling input of fine granular sediment into drainage systems via gully-pots. Water Res 34(15):3836–3844CrossRef Deletic A, Ashley R, Rest D (2000) Modelling input of fine granular sediment into drainage systems via gully-pots. Water Res 34(15):3836–3844CrossRef
Zurück zum Zitat Dillaha TA, Hayes JC (1991) A procedure for design of vegetative filter strips. Final Report to USDA Soil Conservation Service, Washington DC 48 Dillaha TA, Hayes JC (1991) A procedure for design of vegetative filter strips. Final Report to USDA Soil Conservation Service, Washington DC 48
Zurück zum Zitat Flanagan DC, Foster GR, Neibling WH, Burt JP (1989) Simplified equations for filter strip design. Transactions of the ASAE 32:2001–2007CrossRef Flanagan DC, Foster GR, Neibling WH, Burt JP (1989) Simplified equations for filter strip design. Transactions of the ASAE 32:2001–2007CrossRef
Zurück zum Zitat Flood Control District of Maricopa County (2013) Drainage design manual for Maricopa county, Arizona. Flood Control District of Maricopa County, Phoenix, Arizona Flood Control District of Maricopa County (2013) Drainage design manual for Maricopa county, Arizona. Flood Control District of Maricopa County, Phoenix, Arizona
Zurück zum Zitat General algebraic modeling system (2016) OR/MS Today 43(1): 68 General algebraic modeling system (2016) OR/MS Today 43(1): 68
Zurück zum Zitat Getahun MM, Stroosnijder L, Maroulis J, Keesstra SD, Baartman JEM (2015) Soil conservation through sediment trapping: a review. Land Degrad Dev 26(6):544–556. doi:10.1002/ldr.2308 CrossRef Getahun MM, Stroosnijder L, Maroulis J, Keesstra SD, Baartman JEM (2015) Soil conservation through sediment trapping: a review. Land Degrad Dev 26(6):544–556. doi:10.​1002/​ldr.​2308 CrossRef
Zurück zum Zitat Ghadiri H, Rose CW, Hogarth WL (2001) The influence of grass and porous barrier strips on runoff hydrology and sediment transport. Transactions of the ASAE 44(2):259–268CrossRef Ghadiri H, Rose CW, Hogarth WL (2001) The influence of grass and porous barrier strips on runoff hydrology and sediment transport. Transactions of the ASAE 44(2):259–268CrossRef
Zurück zum Zitat Han A, Wu AS, Allan C (2005) Suspended sediment removal by vegetative filter strip treating highway runoff. J Environ Sci Health, Part A: Tox Hazard Subst Environ Eng 40(8):1637–1649CrossRef Han A, Wu AS, Allan C (2005) Suspended sediment removal by vegetative filter strip treating highway runoff. J Environ Sci Health, Part A: Tox Hazard Subst Environ Eng 40(8):1637–1649CrossRef
Zurück zum Zitat Indian Roads (2001) Guideline for the design of flexible pavements. Indian code of practice IRC-37. New Delhi, India Indian Roads (2001) Guideline for the design of flexible pavements. Indian code of practice IRC-37. New Delhi, India
Zurück zum Zitat Iowa State Department of Natural Resources (2009) Iowa state stormwater management manual. Iowa State Department of Natural Resources, Des Moines, IA, US Iowa State Department of Natural Resources (2009) Iowa state stormwater management manual. Iowa State Department of Natural Resources, Des Moines, IA, US
Zurück zum Zitat Jin C, Romkens M (2001) Experimental studies of factors in determining sediment trapping in vegetative filter strips. Transactions of the ASAE 44(2):277–288 Jin C, Romkens M (2001) Experimental studies of factors in determining sediment trapping in vegetative filter strips. Transactions of the ASAE 44(2):277–288
Zurück zum Zitat Khatavkar P (2015) Optimization model for design of vegetative filter strips for stormwater management and sediment control. Master of Sciences Thesis, Arizona State University, Tempe, AZ Khatavkar P (2015) Optimization model for design of vegetative filter strips for stormwater management and sediment control. Master of Sciences Thesis, Arizona State University, Tempe, AZ
Zurück zum Zitat Le Bissonnais Y, Lecomte Y, Cerdan O (2004) Grass strip effects on runoff and soil loss. Agronomie 24(3):129–136CrossRef Le Bissonnais Y, Lecomte Y, Cerdan O (2004) Grass strip effects on runoff and soil loss. Agronomie 24(3):129–136CrossRef
Zurück zum Zitat Lee K, Isenhart T, Schultz R, Mickelson S (1998) Nutrient and sediment removal by switchgrass and cool-season grass filter strips in Central Iowa, USA. Agrofor Syst 44(2–3):121–132CrossRef Lee K, Isenhart T, Schultz R, Mickelson S (1998) Nutrient and sediment removal by switchgrass and cool-season grass filter strips in Central Iowa, USA. Agrofor Syst 44(2–3):121–132CrossRef
Zurück zum Zitat Liu X, Zhang X, Zhang M (2008) Major factors influencing the efficacy of vegetated buffers on sediment trapping: a review and analysis. J Environ Qual 37(5):1667–1674CrossRef Liu X, Zhang X, Zhang M (2008) Major factors influencing the efficacy of vegetated buffers on sediment trapping: a review and analysis. J Environ Qual 37(5):1667–1674CrossRef
Zurück zum Zitat Mays LW (2011) Water resources engineering, 2nd edn. John Wiley & Sons, Inc., Hoboken, NJ Mays LW (2011) Water resources engineering, 2nd edn. John Wiley & Sons, Inc., Hoboken, NJ
Zurück zum Zitat Mays LW, Tung YK (1992) Hydrosystems engineering and management. McGraw-Hill, New York Mays LW, Tung YK (1992) Hydrosystems engineering and management. McGraw-Hill, New York
Zurück zum Zitat Muñoz-Carpena R. Parsons JE Gilliam JW (1999) Modeling hydrology and sediment transport in vegetative filter strips, Journal of Hydrology, 214(1):111–129. Muñoz-Carpena R. Parsons JE Gilliam JW (1999) Modeling hydrology and sediment transport in vegetative filter strips, Journal of Hydrology, 214(1):111–129.
Zurück zum Zitat Muñoz-Carpena R, Parsons JE (2004) Soil & water - a design procedure for vegetative filter strips using VFSMOD-W. Transactions of the ASAE. 47(6):1933CrossRef Muñoz-Carpena R, Parsons JE (2004) Soil & water - a design procedure for vegetative filter strips using VFSMOD-W. Transactions of the ASAE. 47(6):1933CrossRef
Zurück zum Zitat New Jersey Department of Environmental Protection (2004) Stormwater best management practices manual. New Jersey Department of Environmental Protection, Trenton, NJ New Jersey Department of Environmental Protection (2004) Stormwater best management practices manual. New Jersey Department of Environmental Protection, Trenton, NJ
Zurück zum Zitat Novotny V (2003) Water quality: diffuse pollution and watershed management, 2nd edn. John Wiley and Sons, Inc., Hoboken, N.J Novotny V (2003) Water quality: diffuse pollution and watershed management, 2nd edn. John Wiley and Sons, Inc., Hoboken, N.J
Zurück zum Zitat Pan CZ, Ma L, Shangguan Z (2010) Effectiveness of grass strips in trapping suspended sediments from runoff. Earth Surf Process Landf 35(9):1006–1013CrossRef Pan CZ, Ma L, Shangguan Z (2010) Effectiveness of grass strips in trapping suspended sediments from runoff. Earth Surf Process Landf 35(9):1006–1013CrossRef
Zurück zum Zitat Patel AP, Timbadiya P, Patel P (2015) Development of IDF curves under non-stationary meteorological condition. IAHR World Congress (36) Patel AP, Timbadiya P, Patel P (2015) Development of IDF curves under non-stationary meteorological condition. IAHR World Congress (36)
Zurück zum Zitat Pennsylvania Department of Environmental Protection (2006) Pennsylvania Stormwater best management practices manual. Bureau of Watershed Management, Department of Environmental Protection Pennsylvania Department of Environmental Protection (2006) Pennsylvania Stormwater best management practices manual. Bureau of Watershed Management, Department of Environmental Protection
Zurück zum Zitat Rosenthal E (2013) GAMS - a users guide. GAMS Development Corporation, Washington DC Rosenthal E (2013) GAMS - a users guide. GAMS Development Corporation, Washington DC
Zurück zum Zitat Todd DK, Mays LW (2005) Groundwater hydrology, 3rd edn. Wiley, Hoboken, NJ Todd DK, Mays LW (2005) Groundwater hydrology, 3rd edn. Wiley, Hoboken, NJ
Zurück zum Zitat U.S. Soil Conservation Service (1975) Urban Hydrology for small watersheds, U.S. Department of Agriculture, Washngton. D.C. U.S. Soil Conservation Service (1975) Urban Hydrology for small watersheds, U.S. Department of Agriculture, Washngton. D.C.
Zurück zum Zitat U.S. Soil Conservation Service (1988) Vegetative filter strips: now elgible for CRP enrollment - consider the advantages, U.S. Department of Agriculture, Washington, D.C. U.S. Soil Conservation Service (1988) Vegetative filter strips: now elgible for CRP enrollment - consider the advantages, U.S. Department of Agriculture, Washington, D.C.
Zurück zum Zitat Zhang X, Liu X, Zhang M, Dahlgren RA, Eitzel M (2010) A review of vegetated buffers and a meta-analysis of their mitigation efficacy in reducing nonpoint source pollution. J Environ Qual 39(1):76–84CrossRef Zhang X, Liu X, Zhang M, Dahlgren RA, Eitzel M (2010) A review of vegetated buffers and a meta-analysis of their mitigation efficacy in reducing nonpoint source pollution. J Environ Qual 39(1):76–84CrossRef
Metadaten
Titel
Optimization Models for the Design of Vegetative Filter Strips for Stormwater Runoff and Sediment Control
verfasst von
Puneet Khatavkar
Larry W. Mays
Publikationsdatum
08.04.2017
Verlag
Springer Netherlands
Erschienen in
Water Resources Management / Ausgabe 9/2017
Print ISSN: 0920-4741
Elektronische ISSN: 1573-1650
DOI
https://doi.org/10.1007/s11269-016-1552-y

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