Alabama Department of Environmental Management (ADEM), 2007, Low impact development
handbook for the state of Alabama, Alabama Department of Environmental Management
Choi J., Lee O., Kim S., 2017, Estimation of stormwater interception rate for bio-retention
LID facility, [Korean Literature], Journal of Korean Society on Water Environment,
Vol. 33, No. 5, pp. 563-571

Chung S.W., Gassman P.W., Kramer L.A., Williams J.R., Gu R.R., 1999, Validation of
EPIC for two watersheds in southwest Iowa, Journal of Environmental Quality, Vol.
28, No. 3, pp. 971-979

Credit Valley Conservation (CVC), 2012, Low impact development stormwater management
planning and design guide, Credit Valley Conservation
Damodaram C., Giacomoni M.H., Prakash Khedun C., Holmes H., Ryan A., Saour W., Zechman
E.M., 2010, Simulation of combined best management practices and low impact development
for sustainable storm water management, Journal of The American Water Resources Association,
Vol. 46, No. 5, pp. 907-918

Department of Energy and Environment (DOEE), 2013, Stormwater management guidebook,
Department of Energy and Environment, pp. 99-128
Department of Environmental Resources (DER), 2001, The bioretention manual, Prince
George’s County Department of Environmental Resources Programs and Planning Division
Elliott A.H., Trowsdale S.A., Wadhwa S., 2009, Effect of aggregation of on-site storm-water
control devices in an urban catchment model, ASCE Journal of Hydrologic Engineering,
Vol. 14, No. 9, pp. 975-983

Grimmond S., 2007, Urbanization and global environmental change: local effects of
urban warming, The Geographical Journal, Vol. 173, No. 1, pp. 83-88

Green C.H., Tomer M.D., Di Luzio M., Arnold J.G., 2006, Hydrologic evaluation of the
soil and water assessment tool for a lager tile-drained watershed in Iowa, Transactions
of the American Society of Agricultural and Biological Engineers, Vol. 49, No. 2,
pp. 413-422

Gupta H.V., Kling H., Yilmaz K.K., Martinez G.F., 2009, Decomposition of the mean
squared error and NSE performance criteria: implications for improving hydrological
modelling, Journal of Hydrology, Vol. 377, No. 1, pp. 80-91

Han W., 2011, Cases and implications of low impact development for urban stormwater
management improvement in USA, [Korean Literature], Korea Research Institute for Human
Settlements Policy brief, Vol. 334, pp. 1-6

Korea Environmental Corporation (KECO), 2009, [Korean Literature], The study report
of zeroing the feasibility for non-point source pollution in urban areas, Korea Environmental
Corporation, pp. 222-225
Ministry of Environment (ME), 2016, [Korean Literature], Installation, administration
manual of non-point sources pollution control facilities, Ministry of Environment
National Institute of Environmental Research (NIER), 2014, The total amount of water
pollution management technical guidance, National Institute of Environmental Research,
pp. 67-68
Palhegyi G.E., 2010, Modeling and sizing bioretention using flow duration control,
Journal of Hydrologic Engineering, Vol. 15, No. 6, pp. 417-425

United States Environmental Protection Agency (U. S. EPA), 1999, Storm water technology
fact sheet: bioretention, United States Environmental Protection Agency
United States Environmental Protection Agency (U. S. EPA), 2015, Storm water management
model user’s manual version 5.1, United States Environmental Protection Agency
United States Environmental Protection Agency (U. S. EPA), 2016a, Storm water management
model reference manual volume I–Hydrology, United States Environmental Protection
Agency
United States Environmental Protection Agency (U. S. EPA), 2016b, Storm water management
model reference manual volume III–Water Quality, United States Environmental Protection
Agency
Virginia Water Resources Research Center (VWRRC), 2013, Virginia DCR stormwater design
specification No.9, Virginia Water Resources Research Center, pp. 47-59