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

References

1 
Abbaspour, K. C. (2007). User manual for SWAT-CUP, SWAT calibration and uncertainty analysis programs, Swiss federal Institute of Aquatic Science and Technology, Eawag, Deubendorf, Switzerland, 1-33.URL
2 
Arnold, J. G. (1992). Spatial scale variability in model development and parameterization, PhD dissertation, Purdue University, West Lafayette, 112.URL
3 
Arnold, J. G. and Allen, P. M. (1999). Automated methods for estimating baseflow and ground water recharge from streamflow records 1, JAWRA Journal of the American Water Resources Association, 35(2), 411-424. https://doi.org/10.1111/j.1752-1688.1999.tb03599.xDOI
4 
Arnold, J. G., Srinivasan, R., Muttiah, R. S., and Williams, J. R. (1998). Large area hydrologic modeling and assessment part I: model development 1, JAWRA Journal of the American Water Resources Association, 34(1), 73-89. https://doi.org/10.1111/j.1752-1688.1998.tb05961.xDOI
5 
Cho, S. H. (2006). Computation of baseflow contribution to streamflow using environmental tracers in three small catchments Yuseong, PhD Dissertation, Choongnam National University, Daejeon. [Korean Literature]URL
6 
Choi, Y. H., Kum, D., Ryu, J., Jung, Y., Kim, Y. S., Jeon, J. H., Kim, K. S., and Lim, K. J. (2015). A study of total nitrogen pollutant load through baseflow analysis at the watershed, Journal of Korean Society on Water Environment, 31(1), 55-66. [Korean Literature] https://doi.org/10.15681/KSWE.2015.31.1.55DOI
7 
Cleland, B. R. (2003). TMDL Development from the “bottom up”–Part III: Duration Curves and wet-weather assessments, TMDLS Conference 2003, Water Environment Federation, 1740-1766.URL
8 
Eckhardt, K. (2008). A comparison of baseflow indices, which were calculated with seven different baseflow separation methods, Journal of Hydrology, 352(1-2), 168-173. https://doi.org/10.1016/j.jhydrol.2008.01.005DOI
9 
Han, J. and Lee, S. (2024). Analysis of the effects of securing baseflow and improving water quality through the introduction of LID techniques, Sustainability, 16(20), 8932. https://doi.org/10.3390/su16208932DOI
10 
Han, J., Kim, J., Lim, K., and Jung, Y. (2018). Impacts of baseflow contribution on the streamflow variability of major river systems in Korea, Paddy and Water Environment, 16, 835-855. https://doi.org/10.1007/s10333-018-0673-8DOI
11 
Hong, J. Y., Lim, K. J., Shin, Y. Chul., and Jung, Y. Hun. (2015). Quantifying contribution of direct runoff and baseflow to rivers in Han River system, South Korea, Journal of Korea Water Resources Association, 48(4), 309-319. [Korean Literature]DOI
12 
Jang, J. H., Yoon, C. G., Jung, K. W., and Lee, S. B. (2009). Characteristics of pollution loading from Kyonganstream watershed by BASINS/SWAT, Korean Journal of Ecology and Environment, 42(2), 200-211. [Korean Literature]URL
13 
Jang, S. H., Choi, J. Y., and Lee, J. H. (2005). A case study on correlation of water quality and impervious cover rates in watersheds: Focused on An-Yang Cheon, Kyung-An Cheon, Bok-Ha Cheon watersheds, The Seoul Institute, 6(3), 15-27. [Korean Literature]URL
14 
Kim, J. J. and Kim, T. D. (2023). Characterizing hydrological process driven by urbanization at the Kyoung-An Basin. Journal of the Korea Academia-Industrial cooperation Society, 24(12), 373-379. [Korean Literature] https://doi.org/10.5762/KAIS.2023.24.12.373DOI
15 
Lee, S. C., Kim, H. Y., Kim, H. J., Han, J. H., Kim, S. J., Kim, J. G., and Lim, K. J. (2017). Analysis of baseflow contribution based on time-scales using various baseflow separation methods, Journal of the Korean Society of Agricultural Engineers, 59(2), 1-11. [Korean Literature] https://doi.org/10.5389/KSAE.2017.59.2.001DOI
16 
Lee, S. R., Yang, D. S., Choi, Y. J., Lim, K. J., and Kim, J. G. (2018). Analysis of water pollutant load characteristics and its contributions during dry season: Focusing on major streams inflow into South-Han River of Chungju-dam downstream, Journal of Korea Water Resources Association, 05(a), 318-318. [Korean Literature] https://doi.org/10.4491/KSEE.2018.40.6.247DOI
17 
Lee, S. W. and Lee. S. W. (2022). The analysis of water factors for management of lake eutrophication in Paldang lake, Journal of the Korean Ecological Engineering Society, 9(1), 61-72. [Korean Literature]URL
18 
Ministry of Land, Infrastructure and Transport (MOLIT). (2024). National Geographic Information Institute, www.ngii.go.kr (accessed Mar. 2025). [Korean Literature]URL
19 
Moriasi, D. N., Gitau, M. W., Pai, N., and Daggupati, P. (2015). Hydrologic and water quality models: Performance measures and evaluation criteria, Transactions of the ASABE, 58(6), 1763-1785. https://doi.org/10.13031/trans.58.10715DOI
20 
Nash, J. E. and Sutcliffe, J. E. (1970). River flow forecasting through conceptual models. Part I – A discussion of principles, Journal of Hydrology, 10(3), 282-290.DOI
21 
National Institute of Environmental Research (NIER). (2021). Results of measurement, operation and evaluation of the Non- point Source Pollution Monitoring Network in 2020. (accessed Aug. 2021).URL
22 
National Institute of Environmental Research (NIER). (2024a). Environmental Geographic Information Service(EGIS), https://egis.me.go.kr (accessed Mar. 2025). [Korean Literature]URL
23 
National Institute of Environmental Research (NIER). (2024b). The Nationwide Water Pollution Source Survey, https://wems.nier.go.kr/) (accessed Mar. 2025). [Korean Literature]URL
24 
Rural Development Administration (RDA). (2024). Korea Soil Information System(KSIS), http://soil.rda.go.kr/ (accessed Mar. 2025). [Korean Literature]URL