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 
Auerswald K, Fiener P, Martin W, Elhaus D, 2014, Use and Misuse of the K Factor Equation in Soil Erosion Modeling: An Alternative Equation for Determining USLE Nomograph Soil Erodibility Values, CATENA, Vol. 118, pp. 220-225DOI
2 
Bagarello V, Ferro V, Pampalone V, 2013, A New Expression of the Slope Length Factor to Apply USLE-MM at Sparacia Experimental Area (Southern Italy), CATENA, Vol. 102, pp. 21-26DOI
3 
Environmental Systems Research Institute (ESRI), 2002, What’s New in ArcView 3.1, 3.2, and 3.3, ESRI
4 
Erickson A.J, 1997, Aids for Estimating Soil Erodibility - K Value Class and Soil Loss Tolerance, USDA-SCS
5 
Guak D.W, 2007, [Korean Literature], Selection of Soil Erosion Source Area of Dam-basins Using GIS, Master thesis, Chonbuk National University
6 
Jeon J.H, Park C.G, Choi D, Kim T, 2016, Characteristics of Suspended Sediment Loading Under Asian Summer Monsoon Climate Using the Hydrological Simulation Program-FORTRAN, Water, Vol. 9, No. 1, pp. 44DOI
7 
Kettering J, Park J.H, Lindner S, Lee B, Tenhunen J, Kuzyakov Y, 2012, N Fluxes in an Agricultural Catchment Under Monsoon Climate: A Budget Approach at Different Scales, Agriculture, Ecosystems & Environment, Vol. 161, pp. 101-111DOI
8 
Kim Y.J, Kim H.D, Jeon J.H, 2014, Characteristics of Water Budget Components in Paddy Rice Field under the Asian Monsoon Climate: Application of HSPF-Paddy Model, Water, Vol. 6, pp. 2041-2055DOI
9 
Kinnel P.I.A, 2004, Sediment Delivery Ratios: A Misaligned Approach to Determining Sediment Delivery from Hillslopes, Hydrological Porcesses, Vol. 18, pp. 3191-3194DOI
10 
Lim K.J, Sagong M, Engel B.A, Tang Z, Choi J, Kim K.S, 2005, GIS-based Sediment Assessment Tool, CATENA, Vol. 64, pp. 61-80DOI
11 
Lu H, Moran C.J, Prosser I.P, 2006, Modelling Sediment Delivery Ratio Over the Murray Darling Basin, Environmental Modelling & Software, Vol. 21, pp. 1297-1308DOI
12 
Maner S.B, 1958, Factors Influencing Sediment Delivery Raties in the Red Hills Physiographic Area, Transactions American Geophysical Union, Vol. 39, pp. 669-675DOI
13 
Minstry of Environment (ME), 2014, http://egis.me.go.kr/ (accessed 24 Jun. 2014)., Environmental Geographic Information Service (EGIS)
14 
Moore I, Burch G, 1986, Physical Basis of the Length-slope Factor in the Universal Soil Loss Equation, Soil Science Society of America Journal, Vol. 50, pp. 1294-1298DOI
15 
Mutchler C.K, Bowie A.J, 1976, Effect of Land Use on Sediment Delivery Ratios, pp. 1-11
16 
Park K.H, 2003, Soil Erosion Risk Assessment of the Geumho River Watershed Using GIS and RUSLE Methods, [Korean Literature], Journal of the Korean Association of Geographic Information Studies, Vol. 6, pp. 24-36Google Search
17 
Park Y.S, Kim J, Kim N.W, Kim S.J, Jeon J.H, Engel B.A, Jang W, Lim K.J, 2010, Development of New R, C and SDR Modules for the SATEEC GIS System, Computers & Geosciences, Vol. 36, pp. 726-734DOI
18 
Renard K.G, Foster G.R, Weesies G.A, Porter J.P, 1991, RUSLE: Revised Universal Soil Loss Equation, Journal of Soil and Water Conservation, Vol. 6, pp. 30-33Google Search
19 
Roehl J.E, 1962, Sediment Source Areas, Delivery Ratios and Influencing Morphological Factors, International Association of Scientific Hydrology, Vol. 59, pp. 202-213Google Search
20 
Shabani F, Kumar L, Esmaeili A, 2014, Improvement to the Prediction of the USLE K Factor, Geomorphology, Vol. 204, pp. 229-234DOI
21 
Spaeth K.E, Pierson F.B, Weltz M.A, Blackburn W.H, 2003, Evaluation of USLE and RUSLE estimated soil loss on rangeland, Journal of Range Management, pp. 234-246DOI
22 
United States Environmental Protection Agency (U. S. EPA), 1997, Compendium of Tool for Watershed Assessment and TMDL Development, EAP841-B-97-006, Office of Water (4503F), United States Environmental Protection Agency
23 
United States Environmental Protection Agency (U. S. EPA), 2006, BASINS Technical Note 8 - Sediment Parameter and Calibration Guidance for HSPF, Office of Water 4305
24 
Wade J.C, Heady E.O, 1978, Measurement of Sediment Control Impacts on Agriculture, Water Resources Research, Vol. 14, pp. 1-8DOI
25 
Walling D.W, 1983, The Sediment Delivery Problem, Journal Hydrology, Vol. 65, pp. 209-237DOI
26 
Williams J.R, Berndt H.D, 1977, Sediment Load Computed with Universal Equation, Journal of the Hydraulics Division, Vol. 98, pp. 2087-2098Google Search
27 
Williams J. R, 1977, Sediment Delivery Ratios Determined with Sediment and Runoff Models, AIHS-AISH publication, Vol. 122, pp. 168-179
28 
Wischmeier W.H, Smith D.D, 1978, Predicting Rainfall Erosion Losses, USDA Agricultural Research Service Handbook 537, USDA
29 
Zhang W, Zhang Z, Liu F, Qiao Z, Hu S, 2011, Estimation of the USLE Cover and Management Factor C Using Satellite Remote Sensing: A Review, Geoinformatics, pp. 1-5