All Issue

2018 Vol.51, Issue 11S Preview Page

Research Article

30 November 2018. pp. 1117-1126
Abstract
References
1
AghaKouchak, A., Cheng, L., Mazdiyasni, O., and Farahmand, A. (2014). "Global warming and changes in risk of concurrent climate extremes: insights from the 2014 California drought." Geophysical Research Letters, Vol. 41, No. 24, pp. 847-852.
10.1002/2014GL062308
2
Chang, J., Li, Y., Wang, Y., and Yuan, M. (2016). "Copula-based drought risk assessment combined with an integrated index in the Wei River Basin, China." Journal of Hydrology, Vol. 540, pp. 824-834.
10.1016/j.jhydrol.2016.06.064
3
Choi, S.-J., Kim, J. H., and Lee, D.-R. (2012). "Decision of the water shortage mitigation policy using multi-criteria decision analysis." KSCE Journal of Civil Engineering, Vol. 16, No.2, pp. 247-253.
10.1007/s12205-012-0008-z
4
Goharian, E., Burian, S. J., and Karamouz, M. (2018). "Using joint probability distribution of reliability and vulnerability to develop a water system performance index." Journal of Water Resources Planning and Management, Vol. 144, No. 2, pp. 04017081.
10.1061/(ASCE)WR.1943-5452.0000869
5
Hao, Z., and AghaKouchak, A. (2013). "Multivariate standardized drought index: a parametric multi-index model." Advances in Water Resources, Vol. 57, pp. 12-18.
10.1016/j.advwatres.2013.03.009
6
Hashimoto, T., Stedinger, J. R., and Loucks, K. P. (1982). "Reliability, resiliency, and vulnerability criteria for water-resource system performance evaluation." Water Resources Research, Vol. 18, No. 1, pp. 14-20.
10.1029/WR018i001p00014
7
Kao, S.-C., and Govindaraju, R. S. (2010). "A copula-based joint deficit index for drought." Journal of Hydrology, Vol. 380, No. 1-2, pp. 121-134.
10.1016/j.jhydrol.2009.10.029
8
Kim, S. D., Ryu, J. S., Oh, K. R., and Jeong, S. M. (2012). "An application of copulas-based joint drought index for determining comprehensive drought conditions." Journal of Korean Society of Hazard Mitigation, Vol. 12, No.1, pp. 223-230.
10.9798/KOSHAM.2012.12.1.223
9
Lee, J.-H., Kwon, H.-H., Jang, H.-W., and Kim, T.-W. (2016). "Future changes in drought characteristics under extreme climate change over South Korea." Advances in Meteorology, Vol. 2016, pp. 1-19.
10.1155/2016/9164265
10
Lee, J.-H., Park, S.-Y., Kim, J.-S., Sur, C., and Chen, J. (2018). "Extreme drought hotspot analysis for adaptation to a changing climate: assessment of applicability to the five major river basins of the Korean peninsula." International Journal of Climatology, Vol. 38, No. 10, pp. 4025-4032.
10.1002/joc.5532
11
Loucks, D. P. (1997). "Quantifying trends in system sustainability." Hydrological Sciences Journal, Vol. 42, No. 4, pp. 513–530.
10.1080/02626669709492051
12
Maity, R., Sharma, A., Kumar, K. N., and Chanda, K. (2013). "Characterizing drought using reliability-resiliency-vulnerability concept." Journal of Hydrologic Engineering, Vol. 18, No. 7, pp. 859-869.
10.1061/(ASCE)HE.1943-5584.0000639
13
Park, B.-S., Lee, J.-H., Kim, C.-J., and Jang, H.-W. (2013). "Projection of future drought of Korea based on probabilistic approach using multi-model and multi climate change scenarios." Journal of the Korean Society of Civil Engineers, Vol. 33, No. 5, pp. 1871-1885.
10.12652/Ksce.2013.33.5.1871
14
Salvadori, G., and De Michele, C. (2011). "Estimating strategies for multi-parameter multivariate extreme value copulas." Hydrology and Earth System Sciences Discussions, Vol. 7, No. 5, pp. 7563-7590.
10.5194/hessd-7-7563-2010
15
So, J. M., Sohn, K. H., and Bae, D. H. (2014). "Estimation and assessment of bivariate joint drought index based on copula functions." Journal of Korea Water Resources Association, Vol. 47, No. 2, pp. 171-182.
10.3741/JKWRA.2014.47.2.171
16
So, J. M., Sohn, K. H., and Bae, D. H. (2015). "Development and assessment of drought damage estimation technique using drought characteristic factors." Journal of Korean Society of Hazard Mitigation, Vol. 15, No. 2, pp. 93-101.
10.9798/KOSHAM.2015.15.2.93
17
Xu, K., Yang, D., Xu, X., and Lei, H. (2015). "Copula based drought frequency analysis considering the spatio-temporal variability in Southwest China." Journal of Hydrology, Vol. 527, pp. 630-640.
10.1016/j.jhydrol.2015.05.030
18
Xu, Z., Jinno, K., Kawamura, A., Takesaki, S., and Ito, K. (1998). "Performance risk analysis for Fukuoka water supply system." Water Resources Management, Vol. 12, No. 1, pp. 13-30.
10.1023/A:1007916816469
19
Yu, J., Park, Y. J., Kwon, H.-H., and Kim, T.-W. (2018). "Probabilistic assessment of meteorological drought over South Korea under RCP scenarios using a Hidden Markov Model." KSCE Journal of Civil Engineering, Vol. 22, No. 1, pp. 365-372.
10.1007/s12205-017-0788-2
20
Zhang, Q., Xiao, M., Singh, V. P., and Chen, X. (2013). "Copula-based risk evaluation of hydrological droughts in the East River basin, China." Stochastic Environmental Research and Risk Assessment, Vol. 27, No. 6, pp. 1397-1406.
10.1007/s00477-012-0675-9
Information
  • Publisher :KOREA WATER RESOURECES ASSOCIATION
  • Publisher(Ko) :한국수자원학회
  • Journal Title :Journal of Korea Water Resources Association
  • Journal Title(Ko) :한국수자원학회 논문집
  • Volume : 51
  • No :11
  • Pages :1117-1126
  • Received Date : 2018-06-23
  • Revised Date : 2018-09-03; 2018-11-07
  • Accepted Date : 2018-11-07