• Application of KORSLE to Estimate Soil Erosion at Field Scale
  • Song Jae Min1·Jae E Yang2·Kyoung Jae Lim3·Youn Shik Park1*

  • 1Rural Construction Engineering, Kongju National University
    2Dept of Biological Environment, Kangwon National University
    3Dept of Regional Infrastructure Engineering, Kangwon National University

  • 한국형 토양유실공식에 의한 토양유실량 현장예측
  • 송재민1·양재의2·임경재3·박윤식1*

  • 1공주대학교 생물산업공학부
    2강원대학교 바이오자원환경학과
    3강원대학교 지역건설공학과

References
  • 1. De Rosa, P., Cencetti, C., and Fredduzzi, A., 2016, A GRASS tool for the Sediment Delivery Ratio mapping. Proceedings of the 4th Open Source Geospatial Research and Education Symposium, In Marchesini I. & Pierleoni A. (Eds.), Perugia, Italy.
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  • 2. Engel, B., Storm, D., White, M., Arnold, J., and Arabi, M., 2007, A hydrologic/water quality model application protocol. J. Am. Water Resourc. Assoc., 43(5), 1223-1236.
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  • 3. Jung, K.H., Kim, W.T., Hur, S.O., Ha, S.K., Jung, P.K., and Jung, Y.S., 2004, USLE/RUSLE factors for national scale soil loss estimation based on the digital detailed soil map. Korean J. Soil. Sci. Fert., 37(4), 199-206.
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  • 4. Kim, J., Yang, J.E., Lim, K.J., Kim, S.C., Lee, G., Hwang, S., Yu, N., and Park, Y.S., 2017, A study to define area of concern for potential soil loss in Geumgang watershed by KORSLE-based GIS model, J. Soil Groundwater Environ., 22(6), 29-36.
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  • 5. Kim, J., Jang, J.U., Seong, G.G., Cha, S.S., and Park, Y.S., 2018, A study to determine to rainfall erosivity factor of Universal Soil Loss Equation using recent rainfall data, J. Korean Soc. Ag. Eng., 60(6), 13-20.
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  • 8. Park, Y.S., Kim, J., Kim, N., Kim, K.S., Choi, J., and Lim, K.J., 2007, Analysis of sediment yields at watershed scale using ar-ea/slope-based sediment delivery ratio in SATEEC, J. Korean Soc. Water Qual., 23(5), 650-658.
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  • 10. Sung, Y.S., Jung, Y., Lim, K.J., Kim, J., Kim, K.S., Park, S.K., Shin, M., Kum, D.H., and Park, Y.S., 2016, A study to develop monthly cover management factor database for monthly soil loss estimation, J. Korean Soc. Ag. Eng., 58(6), 23-30.
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  • 11. United States Department of Agriculture, 1972, National Engineering Handbook: Sediment Source, Yileds, and Delivery Ratios, Soil Conservation Service, Washington, DC., USA.
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  • 12. Vanoni, V.A., 1975, Sedimentation Engineering, Manual and Report No. 54, American Society of Civil Engineers, New York, USA.
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  • 13. Williams, J.R. and Berndt, H.D., 1977, Sediment Yield Prediction Based on Watershed Hydrology, Trans. Am. Soc. Ag. Eng., 20, 1100-1104.
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  • 14. Williams, J.R., 1977, Sediment yield prediction with universal equation using runoff energy factor. In: Present and Prospective Technology for Predicting Sediment Yield and Sources, USDA-ARS-S-40, U.S Department of Agriculture, Washington, DC., USA.
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  • 15. Wischmeier, W.H. and Smith, D.D., 1965, Predicting rainfall erosion losses from cropland east of the Rocky Mountains: A guide for selection of practices for soil and water conservation Handbook No.282. U.S. Department of Agriculture.
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This Article

  • 2019; 24(5): 31-41

    Published on Oct 31, 2019

  • 10.7857/JSGE.2019.24.5.031
  • Received on Sep 11, 2019
  • Revised on Oct 3, 2019
  • Accepted on Oct 17, 2019

Correspondence to

  • Youn Shik Park
  • Rural Construction Engineering, Kongju National University

  • E-mail: park397@kongju.ac.kr