The Journal of
the Korean Society on Water Environment

The Journal of
the Korean Society on Water Environment

Bimonthly
  • ISSN : 2289-0971 (Print)
  • ISSN : 2289-098X (Online)
  • KCI Accredited Journal

Editorial Office

1 
Ahiablame L.M., Engel B.A., Chaubey I., 2013, Effectiveness of Low Impact Development Practices in Two Urbanized Watersheds: Retrofitting with Rain Barrel/cistern and Porous Pavement, Journal of Environmental Management, Vol. 119, pp. 151-161DOI
2 
Beasley G., Kneale P., 2002, Reviewing the Impact of Metals and PAHs on Macroinvertebrates in Urban Watercourses, Progress in Physical Geography, Vol. 26, No. 2, pp. 236-270DOI
3 
Borgwardt S., 2006, Long-term In-situ Infiltration Performance of Permeable Concrete Block Pavement, Interlocking Concrete Pavement Institute, CA, USA, pp. 49-60
4 
Brombach H., Weiss G., Fuchs S., 2005, A New Database on Urban Runoff Pollution: Comparison of Separate and Combined Sewer System, Water Science and Technology, Vol. 51, No. 2, pp. 119-128DOI
5 
County of Los Angeles, 2014, Low Impact Development – Standards Manual, County of Los Angeles Department of Public Works, pp. E41-E46
6 
Jeon J.H., Choi D.H., Kim J.J., Kim T.D., 2009, Regionalization of CN Parameters for Nakdong River Basin Using SCE-UA Algorithum, [Korean Literature], Journal of Korean Society on Water Environment, Vol. 25, No. 2, pp. 245-255Google Search
7 
Jeon J.H., Choi D.H., Kim T.D., 2009, LIDMOD Development for Evaluating Low Impact Development and Its Applicability to Total Maximum Daily Loads, [Korean Literature], Journal of Korean Society on Water Environment, Vol. 25, No. 1, pp. 58-68Google Search
8 
Jeon J.H., Seo S.C., Park C.G., 2016, The Effect of Connected Bioretention on Reduction of Surface Runoff in LID Design, [Korean Literature], Journal of Korean Society on Water Environment, Vol. 32, No. 6, pp. 562-569DOI
9 
Kim H.G., Kim Y.J., 2017, [Korean Literature], New Development of UHPC Rainwater Storage Block Considering Low Impact Development, Korean Society of Civil Engineers, pp. 31-32
10 
Kim H.H., Oh L.O., Sung S.K., Lee J.Y., Park S.K., 2017, [Korean Literature], Development of Porous Pavement for Reduction of Vehicle Exhaust Emissions and Sustainable Hydrologic Cycle System, Korea Land & Housing Corporation, pp. 70-86
11 
Kim M.E., Jang Y.S., Nam C.H., Shin H.S., 2015, A Study on the Effectiveness Verification of Hydrological Cycle of Pervious Pavement Using LID Simulator, [Korean Literature], Journal of Korea Water Resource Association, Vol. 48, No. 5, pp. 321-330DOI
12 
Kwon J.H., Park I.H., Ha S.R., 2010, The Analysis of Runoff Characteristics by Alterations of SCS-CN Value Using LID Method, [Korean Literature], Journal of Environmental Impact Assessment, Vol. 16, No. 1, pp. 49-57Google Search
13 
Lee H.Y., Kim Y.T., Lee C.K., Lee J.S., 2007, [Korean Literature], Experimental Study on Infiltration Properties of Permeable Pavement, Korean Society of Civil Engineers, pp. 2613-2616
14 
Lee S.H., Kim J.W., Yoo I.K., Kim N.S., 2012, Analysis on Runoff Reduction Effects of Detachable Permeable Block, [Korean Literature], Journal of Korean Society of Hazard Mitigation, Vol. 12, No. 6, pp. 157-162DOI
15 
Matlock M.D., Morgan R.A., 2011, Ecological Engineering Design: Restoring and Conservation Ecosystem Services, WILEY, John Wiley & Sons, Inc, pp. 297
16 
Ministry of Enviroment (ME), 2013, [Korean Literature], The Guideline of LID-Technology Elements, 11-1480000-001272-01, Ministry of Enviroment
17 
Ministry of Enviroment (ME), 2016, [Korean Literature], The Guideline of LIDTechnology Elements, Ministry of Enviroment
18 
Ministry of Transport Te Manatu Waka, 2003, The Effects of Road Transport on Freshwater and Marine Ecosystems, Ministry of Transport Te Manatu Waka
19 
National Resources Conservation Service(NRCS), 1986, Urban Hydrology for Small Watersheds, TR-55, Conservation Engineering Division, National Resources Conservation Service, United States Department of Agriculture
20 
Park D., Jung W., Jeong D., Baek J., Lee J., 2016, Evaluation of Filed Permeability and Material Characteristics of Permeable Block for Roadway Pavement, [Korean Literature], Ecology and Resilient Infirastructure, Vol. 3, No. 2, pp. 110-116DOI
21 
Prince George’s County (PGCo), 1999, Low-impact Development Hydrologic Analysis, Department of Environmental Resources, Prince George’s County
22 
Rossman L.A., 2010, Storm Water Management Model User’s Manual Version 5.0, EPA
23 
Sin J., Jun C., Zhu J.H., Yoo C., 2014, Evaluation of Flood Runoff Reduction Effect of LID (Low Impact Development) based on the Decrease in CN: Case Studies from Gimcheon Pyeonghwa District, Korea, Procedia Engineering, Vol. 70, pp. 1531-1538DOI
24 
Southeast Michigan Council of Goverments Information Center (SEMCOG), 2008, Low Impact Development Manual for Michigan: A Design Guide for Implementors and Reviewers, Southeast Michigan Council of Goverments Information Center, pp. 57
25 
Whittaker B.N., Reddish D.J., 1989, Subsidence Occurrence, Prediction and Control, Elservier, Vol. 56, pp. 528
26 
Zgheib S., Moilleron R., Chebbo G., 2012, Priority Pollutants in Urban Stormwater: Part1-Case of Seperate Storm Sewers, Water Research, Vol. 46, No. 20, pp. 6683-6692DOI
27 
Zomorodi K., 2015, http://dewberry.com/docs/defaultsource/documents/curve_number_and_groundwater_recharge_credits.pdf (accessed Mar. 2018), Curve number and groundwater recharge credits for LID facilities in New Jersey