References
- J.R. Vogel, T.L. Moore, R.R. Coffman, S.N. Rodie,
S.L. Hutchinson, K.R. McDonough, J.T. McMaine, Critical
review of technical questions facing low impact development
and green infrastructure: a perspective from the Great Plains,
Water Environ. Res., 87 (2015) 849–862.
- Prince George’s County, Low-impact development design
strategies: an integrated design approach, EPA 841-B-00-003, Department of Environmental Resources, Programs and
Planning Division, Prince George’s County, Maryland, 1999.
- H. Jia, Z. Wang, X. Zhen, M. Clar, L.Y. Shaw, China’s sponge
city construction: a discussion on technical approaches, Front.
Environ. Sci. Eng., 11 (2017) 18.
- S.D. Lloyd, T.H.F. Wong, C.J. Chesterfield, Water sensitive
urban design: a stormwater management perspective. Industry
Report 02/10, Cooperative Research Centre for Catchment
Hydrology, Melbourne, Australia, 2002.
- T. Dorman, M. Frey, J. Wright, B. Wardynski, J. Smith, B. Tucker,
J. Riverson, A. Teague, K. Bishop, San Antonio River Basin Low
Impact Development Technical Design Guidance Manual v1,
San Antonio River Authority, San Antonio, TX, USA, 2013.
- M.C. Hager, Low-impact development: lot-level approaches
to stormwater management are gaining ground, Stormwater,
January/February, 2003.
- H. Jia, H. Yao, Y. Tang, L.Y. Shaw, R. Field, A.N. Tafuri, LIDBMPs
planning for urban runoff control and the case study in
China, J. Environ. Manage., 149 (2015) 65–76.
- K. Alfredo, F. Montalto, A. Goldstein, Observed and modeled
performances of prototype green roof test plots subjected to
simulated low-and high-intensity precipitations in a laboratory
experiment, J. Hydrol. Eng., 15 (2009) 444–457.
- C. Chapman, R.R. Horner, Performance assessment of a streetdrainage
bioretention system, Water Environ. Res., 82 (2010)
109–119.
- J.M. Lee, K.H. Hyun, J.S. Choi, Y.J. Yoon, F.K.F. Geronimo, Flood
reduction analysis on watershed of LID design demonstration
district using SWMM5, Desal. Wat. Treat., 38 (2012) 255–261.
- H. Qin, Z. Li, G. Fu, The effects of low impact development
on urban flooding under different rainfall characteristics,
J. Environ. Manage., 129 (2013) 577–585.
- Z. Zahmatkesh, S.J. Burian, M. Karamouz, H. Tavakol-Davani,
E. Goharian, Low-impact development practices to mitigate
climate change effects on urban stormwater runoff: case study
of New York City, J. Irrig. Drainage Eng., 141 (2015) 04014043.
- S.A. Trowsdale, R. Simcock, Urban stormwater treatment using
bioretention, J. Hydrol., 397 (2011) 167–174.
- H. Yang, W.A. Dick, E.L. McCoy, P.L. Phelan, P.S. Grewal, Field
evaluation of a new biphasic rain garden for stormwater flow
management and pollutant removal, Ecol. Eng., 54 (2013) 22–31.
- J. Liu, A.P. Davis, Phosphorus speciation and treatment using
enhanced phosphorus removal bioretention, Environ. Sci.
Technol., 48 (2013) 607–614.
- X. Yang, Y. Mei, J. He, R. Jiang, Y. Li, J. Li, Comprehensive
assessment for removing multiple pollutants by plants in
bioretention systems, Chinese Sci. Bull., 59 (2014) 1446–1453.
- M.C. Leroy, M. Legras, S. Marcotte, V. Moncond’huy,
N. Machour, F. Le Derf, F. Portet-Koltalo, Assessment of
PAH dissipation processes in large-scale outdoor mesocosms
simulating vegetated road-side swales, Sci. Total Environ., 520
(2015) 146–153.
- H. Jia, X. Wang, C. Ti, Y. Zhai, R. Field, A.N. Tafuri, H. Cai,
S.L. Yu, Field monitoring of a LID-BMP treatment train system
in China, Environ. Monit. Assess., 187 (2015) 373.
- W. Liu, W. Chen, C. Peng, Assessing the effectiveness of green
infrastructures on urban flooding reduction: a community scale
study, Ecol. Model., 291 (2014) 6–14.
- M.S. Cheng, J.X. Zhen, L. Shoemaker, BMP decision support
system for evaluating stormwater management alternatives,
Front. Environ. Sci. Eng. China, 3 (2009) 453–463.
- H. Jia, Y. Lu, L.Y. Shaw, Y. Chen, Planning of LID-BMPs for
urban runoff control: the case of Beijing Olympic Village,
Sep. Purif. Technol., 84 (2012) 112–119.
- A.E. Barbosa, J.N. Fernandes, L.M. David, Key issues for
sustainable urban stormwater management, Water Res., 46
(2012) 6787–6798.
- L.A. Rossman, Storm Water Management Model User’s Manual
Version 5.0, EPA/600/R-05/040, National Risk Management
Research Laboratory, Environmental Protection Agency,
Cincinnati, Ohio, USA, 2010.
- M. Eric, C. Fan, D. Joksimovic, J.Y. Li, Modeling low impact
development potential with hydrological response units. Water
Sci. Technol., 68 (2013) 2382–2390.
- Z.L. Liao, G.Q. Zhang, Z.H. Wu, Y. He, H. Chen, Combined
sewer overflow control with LID based on SWMM an example
in Shanghai, China, Water Sci. Technol., 7 (2015) 1136–1142.
- J. Xie, C. Wu, H. Li, G. Chen, Study on storm-water management
of grassed swales and permeable pavement based on SWMM,
Water, 9 (2017) 840.
- T. Xu, H. Jia, Z. Wang, X. Mao, C. Xu, SWMM-based
methodology for block-scale LID-BMPs planning based on
site-scale multi-objective optimization: a case study in Tianjin,
Front. Environ. Sci. Eng., 11 (2017) 1.
- Ministry of Environment, Process Guide for Treatment
Declaration of Non-Point Source Pollution, Water Environment
Policy Bureau, 2010 (in Korean).
- W.C. Huber, R.E. Dickinson, Storm Water Management
Model, Version 4: User’s Manual, EPA/600/3-88/001a, U.S.
Environmental Protection Agency, Athens, Georgia, USA, 1992.
- CDM Smith, Stomwater Master Plan Update Phase 1: City of St.
Augustine, Final Report, 2013.
- W. James, W.C. Huber, R.E. Dickinson, R.E. Pitt, W.R.C. James,
L.A. Roesner, J.A. Aldrich, User’s Guide to SWMM, CHI,
Ontario, Canada, 2005.
- U.S. EPA, Reducing Stormwater Costs through Low Impact
Development (LID) Strategies and Practices, EPA 841-F-07-006,
Washington, DC, USA, 2007.