References
- Fernandez, C., Wu, J. Q., McCool, D. K., and StOckle, C. O. (2003). "Estimating water erosion and sediment yield with GIS, RUSLE, and SEDD." Journal of Soil and Water Conservation, Vol. 58, No, 3, pp. 128-136.
- Ferro, V., and Porto, P. (2000). "Sediment delivery distribution (SEDD) model." Journal of Hydrologic Engineering, Vol. 5, No. 4, pp. 411-422. https://doi.org/10.1061/(ASCE)1084-0699(2000)5:4(411)
- Fu, G., Chen, S., and McCool, D. K. (2006). "Modeling the impacts of no-till practice on soil erosion and sediment yield with RUSLE, SEDD, and ArcView GIS." Soil and Tillage Research, Vol. 85, No. 1-2, pp. 38-49. https://doi.org/10.1016/j.still.2004.11.009
- Jain, M. K., and Kothyari, U. C. (2000). "Estimation of soil erosion and sediment yield using GIS." Hydrological Sciences Journal, Vol. 45, No. 5, pp. 771-786. https://doi.org/10.1080/02626660009492376
- Kamaludin, H, Lihan, T., Ali Rahman, Z., Mustapha, M. A., Idris, W. M., and Rahim, S. A. (2013). "Integration of remote sensing, RUSLE and GIS to model potential soil loss and sediment yield (SY)." Hydrology and Earth System Sciences Discussions, Vol. 10, No. 4, pp. 4567-4596. https://doi.org/10.5194/hessd-10-4567-2013
- Kang, S. H. (2015). "GIS-based sediment transport in Asian monsoon region." Environmental Earth Sciences, Vol. 73, No. 1, pp. 221-230. https://doi.org/10.1007/s12665-014-3414-3
- Korea Institute of Construction Technology (KICT) (1992). The development of selection standard for calculation method of unit sediment yield in river. 89-WR-113 Research Paper (in Korean).
- Kothyari, U. C., and Jain, M. K. (1997). "Sediment yield estimation using GIS." Hydrological Sciences Journal, Vol. 46, No, 6, pp. 833-843.
- Lee, G. S., and Lee, K. H. (2006). "Scaling effect for estimating soil loss in the RUSLE model using remotely sensed geospatial data in Korea." Hydrology and Earth System Sciences Discussions, Vol. 3, No. 1, pp. 135-157. https://doi.org/10.5194/hessd-3-135-2006
- Lee, S. E., and Kang, S. H. (2013)." Estimating the GIS-based soil loss and sediment delivery ratio to the sea for four major basins in South Korea." Water Science and Technology, Vol. 68, No. 1, pp. 124-133. https://doi.org/10.2166/wst.2013.194
- Lee, S. E., and Kang, S. H. (2014). "Geographic information systemcoupling sediment delivery distribution modeling based on observed data." Water Science and Technology, Vol. 70, No. 3, pp. 495-501. https://doi.org/10.2166/wst.2014.231
- Lu, X. X., and Siew, R. Y. (2005). "Water discharge and sediment flux changes in the lower Mekong River." Hydrology and Earth System Sciences Discussions, Vol. 2, No. 6, pp. 2287-2325. https://doi.org/10.5194/hessd-2-2287-2005
- Milliman, J. D., and Syvitski, P. M. (1992). "Geomorphic/tectonic control of sediment discharge to the ocean: the importance of small mountainous rivers." The Journal of Geology, Vol. 100, No. 5, pp. 525-544. https://doi.org/10.1086/629606
- Ministry of Land, Infrastructure and Transport (2014). WAter Management Information System (WAMIS), Korea (in Korean).
- Mutua, B. M., and Klik, A. (2006). "Estimating spatial sediment delivery ratio on a large rural catchment." Journal of Spatial Hydrology, Vol. 6, No. 1, pp. 64-80.
- National Academy of Agricultural Science (2014). Soil map, Korea (In Korean).
- Neibling, W. H., and Foster, G. R. (1997) Estimating deposition and sediment yield from overland flow processes. International Symposium on Urban Hydrology, Hydraulics, and Sediment Control Procs. University of Kentucky, Lexington.
- Pal, B., Samanta, S., and Pal, D. K. (2012). "Morphometric and hydrological analysis and mapping for Watut watershed using Remote Sensing and GIS techniques." International Journal of Advances in Engineering & Technology, Vol. 2, No. 1, pp. 357-368.
- Phillips, J. D. (1995). "Decoupling of sediment sources in large river basins; Effects of Scale on Interpretation and Management of Sediment and Water Quality." Proceedings a Boulder Symposium, July, IAHS publ. No. 226, pp. 11-16.
- Renard, K. G., Foster, G. R., Weesies, G. A., and Porter, J. P. (1997). "RUSLE: Revised Universal Soil Loss Equation." Journal of Soil and Water Conservation, Vol. 46, No. 1, pp. 30-33.
- Renard, K. G., Foster, G. R., Weesies, G. A., McCool, D. K., and Yoder, D. C. (1997). Predicting soil erosion by water: a guide to conservation planning with the Revised Universal Soil Loss Equation (RUSLE). Agriculture Handbook No. 703, US Department of Agriculture: Washington, DC, USA.
- Rosati, J. D. (2005). "Concepts in sediment budgets." Journal of Coastal Research, Vol. 21, No. 2, pp. 307-322. https://doi.org/10.2112/02-475A.1
- Wischmeier, W. H., Johnson, C. B., and Cross, B. V. (1971). "A soil erodibility nomograph for farmland and construction sites." Journal of Soil and Water Conservation, Vol. 26, No. 5, pp. 26,189-193.
- Wischmeier, W. H., and Smith, D. D. (1978). "Rainfall energy and its relation to soil loss." Transactions, American Geophysical Union, Vol. 39, No. 2, pp. 285-291. https://doi.org/10.1029/TR039i002p00285
- Wischmeier, W. H., and Smith, D. D. (1978). Predicting rainfall erosion losses. USDA Ag. Res Serv Handbook, Vol. 537, US Department of Agriculture, Washington, DC, USA.
- Yekta, A. H. A., Marsooli, R., and Soltana, F. (2010). "Suspended sediment estimation of Ekbatan Reservoir Sub Basin using Adaptive Neuro-Fuzzy Inference Systems (ANFIS), Artificial Neural Networks (ANN), and Sediment Rating Curves (SRC)." River Flow, Dittrich, Koll, Aberle & Geisenhainer (eds), pp. 807-813.