References
- D.A. Wilhite, M.H. Glantz, Understanding the drought phenomenon:
the role of definitions, Water Int., 10 (1985) 111–120.
- F.N. Kogan, Global drought watch from space, Bull. Am.
Meteorol. Soc., 78 (1997) 621–636.
- WEF (World Economic Forum), The Global Risk Report 2019,
14th ed., WEF, Geneva, Switzerland, 2019, pp. 1–107.
- O.V. Wilhelmi, D.A. Wilhit, Assessing vulnerability to
agricultural drought: a Nebraska case study, Nat. Hazards,
25 (2002) 37–58.
- H.J. Kim, H.S. Kang, A.Y. Jeong, A Study on Adaptive Drought
Management Policy to Drought Stages: Focused on the Nonstructural
Measures at Local Scale, KEI (Korea Environment
Institute), Sejong, South Korea, 2016, pp. 1–125.
- K. Jinno, Risk assessment of a waste supply system during
drought, Int. J. Water Resour. Dev., 11 (1995) 185–204.
- H.J. Fowler, C.G. Kilsby, P.E. O’Connell, Modeling the impacts
of climatic change and variability on the reliability, resilience,
and vulnerability of a water resource system, Water Resour.
Res., 39 (2003) 1222–1232.
- J.Y. Yoo, H.H. Kwon, T.W. Kim, J.H. Ahn, Drought frequency
analysis using cluster analysis and bivariate probability
distribution, J. Hydrol., 420 (2012) 102–111.
- J.R. Santos, S.T. Pagsuyoin, L.C. Herrera, R.R. Tan, K.D. Yu,
Analysis of drought risk management strategies using dynamic
inoperability input–output modeling and event tree analysis,
Environ. Syst. Decis., 34 (2014) 492–506.
- P. Amarasinghe, A. Liu, P. Egodawatta, P. Barnes, J. McGree,
A. Goonetilleke, System under rainfall reduction due to
climate change, J. Hydrol., 540 (2016) 1043–1052.
- G. Zhao, H. Gao, S.C. Kao, N. Voisin, B.S. Naz, A modeling
framework for evaluating the drought resilience of a surface
water supply system under non-stationarity, J. Hydrol., 563 (2018)
22–32.
- H.G. Bohle, T.E. Downing, M.J. Watts, Climate change and
social vulnerability. Toward a sociology and geography of food
insecurity, Global Environ. Change, 4 (1994) 37–48.
- MOE (Ministry of Environment), Standard for Waterworks
Facilities, KWWA (Korea Water and Wastewater Association),
Seoul, South Korea, 2017, pp. 1–213.
- MOLIT (Ministry of Land, Infrastructure, and Transport), Water
Vision 2001~2020, MOLIT, Sejong, South Korea, 2016, pp. 1–131.
- MOLIT (Ministry of Land, Infrastructure, and Transport),
Probability of Rainfall Improvement and Complementary,
MOLIT, Sejong, South Korea, 2011, pp. 1–237.
- G.C. Dandy, M.C. Connarty, D.P. Loucks, Comparison of
methods for yield assessment of multiple reservoir systems,
J. Water Res. Plann. Manage., 123 (1997) 350–358.
- MOLIT (Ministry of Land, Infrastructure, and Transport),
Existing Water Resources Utilization Report, MOLIT, Sejong,
South Korea, 2016, pp. 1–472.
- K-water, Water Supply Adjustment Guidelines, K-water,
Daejeon, South Korea, 2016, pp. 1–32.
- MOE (Ministry of Environment), Standards for Estimating the
Operating Cost and Construction Cost of Waterworks, MOE,
Sejong, South Korea, 2016, pp. 1–20.