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 
Ahmadalipour A., Moradkhani H., 2017, Analyzing the uncertainty of ensemble-based gridded observations in land surface simulations and drought assessment, Journal of hydrology, Vol. 555, pp. 557-568DOI
2 
Ahmadalipour A., Moradkhani H., Demirel M. C., 2017, A comparative assessment of projected meteorological and hydrological droughts: Elucidating the role of temperature, Journal of Hydrology, Vol. 553, pp. 785-797DOI
3 
Ahmadi B., Ahmadalipour A., Moradkhani H., 2019, Hydrological drought persistence and recovery over the CONUS: A multi-stage framework considering water quantity and quality, Water research, Vol. 150, pp. 97-110DOI
4 
Bárdossy A., Pegram G. G. S., 2009, Copula based multisite model for daily precipitation simulation, Hydrology and Earth System Sciences, Vol. 13, No. 12, pp. 2299-2314DOI
5 
Boulton A., Lake P., 1992, The ecology of two intermittent streams in Victoria, Australia: II. Comparisons of faunal composition between habitats, rivers and years, Freshwater Biology, Vol. 27, No. 1, pp. 99-121Google Search
6 
Brumbaugh R., Werick W., Teitz W., Lund J., 1994, Lessons Learned From the California Drought (1987-1992), Alexandria (VA): US Army Corps of Engineers, Institute for Water Resources, IWR Report 94-NDS-6Google Search
7 
Buskey E. J., Liu H., Collumb C., Bersano J. G. F., 2001, The decline and recovery of a persistent Texas brown tide algal bloom in the Laguna Madre (Texas, USA), Estuaries, Vol. 24, No. 3, pp. 337-346Google Search
8 
Caruso B. S., 2002, Temporal and spatial patterns of extreme low flows and effects on stream ecosystems in Otago, New Zealand, Journal of Hydrology, Vol. 257, No. 1-4, pp. 115-133DOI
9 
Chang Y., Kim S., Choi G., 2006, A study of drought spatio-temporal characteristics using SPI-EOF analysis, Journal of Korea Water Resources Association, Vol. 39, No. 8, pp. 691-702Google Search
10 
Crausbay S., Ramirez A., Carter S., Cross M., Hall K., Bathke D., Betancourt J., Colt S., Cravens A., Dalton M., Dunham J., Hay L., Hayes M., McEvoy J., McNutt C., Moritz M., Nislow K., Raheem N., Sanford T., 2017, Defining ecological drought for the twenty-first century, Bulletin of the American Meteorological Society, Vol. 98, No. 12, pp. 2543-2550DOI
11 
Dai A., 2013, Increasing drought under global warming in observations and models, Nature climate change, Vol. 3, No. 1, pp. 52-58Google Search
12 
Davies A. W., 1978, Pollution problems arising from the 1975-76 drought, Proceedings of the Royal Society of London A, Mathematical and Physical Sciences, Vol. 363, No. 1712, pp. 97-107DOI
13 
Ha K., Cho E. A., Kim H. W., Joo G. J., 1999, Microcystis bloom formation in the lower Nakdong River, South Korea: Importance of hydrodynamics and nutrient loading, Marine and Freshwater Research, Vol. 50, No. 1, pp. 89-94Google Search
14 
Heudorfer B., Stahl K., 2016, Comparison of different threshold level methods for drought propagation analysis in Germany, Hydrology Research, Vol. 48, No. 5, pp. 1311-1326DOI
15 
Hirabayashi Y., Kanae S., Emori S., Oki T., Kimoto M., 2008, Global projections of changing risks of floods and droughts in a changing climate, Hydrological Sciences Journal, Vol. 53, No. 4, pp. 754-772DOI
16 
Hrdinka T., Novický O., Hanslík E., Rieder M., 2012, Possible impacts of floods and droughts on water quality, Journal of Hydro-environment Research, Vol. 6, No. 2, pp. 145-150Google Search
17 
Israel M., Lund J. R., 1995, Recent California water transfers: Implications for water management, Natural Resources Journal, Vol. 35, pp. 1-32Google Search
18 
Kim H., Park J., Yoon J., Kim S., 2010, Application of SAD curves in assessing climate-change impacts on spatio-temporal characteristics of extreme drought events, Journal of the Korean Society of Civil Engineers B, Vol. 30, No. 6B, pp. 561-569Google Search
19 
Kim S., Kim B., Ahn T. J., Kim H. S., 2011, Spatio‐temporal characterization of Korean drought using severity–area–duration curve analysis, Water and Environment Journal, Vol. 25, No. 1, pp. 22-30DOI
20 
Kim S., Ryu J., Oh K., Jeong S., 2012, An application of copulas-based joint drought index for determining comprehensive drought conditions, Journal of the Korean Society of Hazard Mitigation, Vol. 12, No. 1, pp. 223-230Google Search
21 
Korea Meteorological Administration (KMA), 2015, Open MET Data Portal, http://data.kma.go.kr(accessed August. 2020).
22 
Lake P. S., 2003, Ecological effects of perturbation by drought in flowing waters, Freshwater biology, Vol. 48, No. 7, pp. 1161-1172DOI
23 
Lake P. S., 2011, Drought and aquatic ecosystems: Effects and responses, John Wiley & SonsGoogle Search
24 
Laux P., Vogl S., Qiu W., Knoche H. R., Kunstmann H., 2011, Copula-based statistical refinement of precipitation in RCM simulations over complex terrain, Hydrology and Earth System Sciences, Vol. 15, No. 7, pp. 2401-2419Google Search
25 
Leigh C., Bush A., Harrison E. T., Ho S. S., Luke L., Rolls R. J., Ledger M. E., 2015, Ecological effects of extreme climatic events on riverine ecosystems: Insights from Australia, Freshwater Biology, Vol. 60, No. 12, pp. 2620-2638DOI
26 
Matthews W. J., Marsh-Matthews E., 2003, Effects of drought on fish across axes of space, time and ecological complexity, Freshwater biology, Vol. 48, No. 7, pp. 1232-1253DOI
27 
McKee T. B., Doesken N. J., Kleist J., 1993, The relationship of drought frequency and duration to time scales, Proceedings of the 8th Conference on Applied Climatology, American Meteorological Society, pp. 179-183DOI
28 
Ministry of Environment (ME), 2015, Water Environment Information System (WEIS), http://water.nier.go.kr (accessed August. 2020).Google Search
29 
Ministry of Environment (ME), 2016, Establishment of monitoring system and integrated model for estimating environmental ecological flow, TRKO201900000641, [Korean Literature], Bio-Monitoring Center, pp. 155-221Google Search
30 
Mishra A., Vu T., Veettil A. V., Entekhabi D., 2017, Drought monitoring with soil moisture active passive (SMAP) measurements, Journal of Hydrology, Vol. 552, pp. 620-632DOI
31 
Mosley L. M., 2015, Drought impacts on the water quality of freshwater systems; review and integration, Earth-Science Reviews, Vol. 140, pp. 203-214DOI
32 
Mosley L. M., Zammit B., Leyden E., Heneker T. M., Hipsey M. R., Skinner D., Aldridge K. T., 2012, The impact of extreme low flows on the water quality of the Lower Murray River and Lakes (South Australia), Water Resources Management, Vol. 26, No. 13, pp. 3923-3946DOI
33 
Mulholland P. J., Best G. R., Coutant C. C., Hornberger G. M., Meyer J. L., Robinson P. J., Stenberg J. R., Turner R. E., Vera-Herrera F., Wetzel R. G., 1997, Effects of climate change on freshwater ecosystems of the south‐eastern United States and the Gulf Coast of Mexico, Hydrological Processes, Vol. 11, No. 8, pp. 949-970Google Search
34 
Murdoch P. S., Baron J. S., Miller T. L., 2000, Potential effects of climate change on surface-water quality in North America, Journal of the American Water Resources Association, Vol. 36, No. 2, pp. 347-366DOI
35 
Ryu J., Ahn J., Kim S., 2012, An application of drought severity-area-duration curves using copulas-based joint drought index, [Korean Literature], Journal of Korea Water Resources Association, Vol. 45, No. 10, pp. 1043-1050DOI
36 
Sadegh M., Ragno E., AghaKouchak A., 2017, Multivariate Copula Analysis Toolbox (MvCAT): describing dependence and underlying uncertainty using a Bayesian framework, Water Resources Research, Vol. 53, No. 6, pp. 5166-5183DOI
37 
Salvadori G., De Michele C., 2004, Frequency analysis via copulas: Theoretical aspects and applications to hydrological events, Water Resources Research, Vol. 40, No. 12, pp. W12511Google Search
38 
Sklar M., 1959, Fonctions de Répartition à n Dimensions et Leurs Marges, Publications de l’Institut Statistique de l’Université, de Paris, Vol. 8, pp. 229-231Google Search
39 
Sprague L. A., 2005, Drought effects on water quality in the south platte river basin, colorado 1, Journal of the American Water Resources Association, Vol. 41, No. 1, pp. 11-24DOI
40 
Tallaksen L. M., Van Lanen H. A., 2004, Hydrological drought: processes and estimation methods for streamflow and groundwater, Hydrology and Quantitative Water ManagementGoogle Search
41 
Trenberth K. E., Dai A., Van Der Schrier G., Jones P. D., Barichivich J., Briffa K. R., Sheffield J., 2014, Global warming and changes in drought, Nature Climate Change, Vol. 4, No. 1, pp. 17-22DOI
42 
Van Loon A. F., Laaha G., 2015, Hydrological drought severity explained by climate and catchment characteristics, Journal of hydrology, Vol. 526, pp. 3-14DOI
43 
Van Loon A. F., Van Lanen H. A., 2012, A process-based typology of hydrological drought, Hydrology and Earth System Sciences, Vol. 16, No. 7, pp. 1915-1946DOI
44 
Van Vliet M. T. H., Zwolsman J. J. G., 2008, Impact of summer droughts on the water quality of the Meuse river, Journal of Hydrology, Vol. 353, No. 1-2, pp. 1-17DOI
45 
Whitehead P. G., Wilby R. L., Battarbee R. W., Kernan M., Wade A. J., 2009, A review of the potential impacts of climate change on surface water quality, Hydrological Sciences Journal, Vol. 54, No. 1, pp. 101-123DOI
46 
Wilbers G. J., Zwolsman G., Klaver G., Hendriks A. J., 2009, Effects of a drought period on physico-chemical surface water quality in a regional catchment area, Journal of Environmental Monitoring, Vol. 11, No. 6, pp. 1298-1302Google Search
47 
Won J., Kim S., 2020, Future drought analysis of SPI and EDDI considering climate change in South Korea, [Korean Literature], Water Supply, Vol. 20, No. 8, pp. 3266-3280Google Search
48 
Won J., Choi J., Lee O., Kim S., 2020, Copula-based joint drought index using SPI and EDDI and its application to climate change, Science of the Total Environment, Vol. 744, pp. 140701Google Search
49 
Zhang L., Singh V. P., 2006, Bivariate flood frequency analysis using the copula method, Journal of hydrologic engineering, Vol. 11, No. 2, pp. 150-164DOI
50 
Zhang L., Singh V. P., 2007, Bivariate rainfall frequency distributions using Archimedean copulas, Journal of Hydrology, Vol. 332, No. 1-2, pp. 93-109DOI
51 
Zieliński P., Gorniak A., Piekarski M. K., 2009, The effect of hydrological drought on chemical quality of water and dissolved organic carbon concentrations in lowland rivers, Polish Journal of Ecology, Vol. 57, No. 2, pp. 217-227Google Search