Impact of the false intensification and recovery on the hydrological drought internal propagation
Tài liệu tham khảo
AghaKouchak, 2015, Recognize anthropogenic drought, Nature, 524, 409, 10.1038/524409a
Antofie, 2015, Estimating the water needed to end the drought or reduce the drought severity in the Carpathian region, Hydrol. Earth Syst. Sci., 19, 177, 10.5194/hess-19-177-2015
Apurv, 2017, Understanding the role of climate characteristics in drought propagation, Water Resour. Res, 53, 9304, 10.1002/2017WR021445
Apurv, 2019, Influence of internal variability and global warming on multidecadal changes in regional drought severity over the continental, U.S., J. Hydrometeorol., 20, 411, 10.1175/JHM-D-18-0167.1
Boyer, 2013, The U.S. drought of 2012 in perspective: a call to action, Global Food Security, 2, 139, 10.1016/j.gfs.2013.08.002
Budyko, 1974
Dracup, 1980, On the definition of droughts, Water Resour. Res., 16, 297, 10.1029/WR016i002p00297
Eltahir, 1999, On the asymmetric response of aquifer water level to floods and droughts in Illinois, Water Resour. Res., 35, 1199, 10.1029/1998WR900071
Huning, 2017, Climatology of seasonal snowfall accumulation across the Sierra ANevada (USA): accumulation rates, distributions, and variability, Water Resour. Res., 53, 6033, 10.1002/2017WR020915
Khatiwada, 2019
Lin, 2014, Xinanjiang model combined with curve number to simulate the effect of land use change on environmental flow, J. Hydrol., 519, 3142, 10.1016/j.jhydrol.2014.10.049
Lin, 2017, A new drought index that considers the joint effects of climate and land surface change, Water Resour. Res., 53, 3262, 10.1002/2016WR020178
Linsley, 1982
Liu, 2016, A probabilistic prediction network for hydrological drought identification and environmental flow assessment, Water Resour. Res., 52, 6243, 10.1002/2016WR019106
Liu, 2016, Karst catchments exhibited higher degradation stress from climate change than the non-karst catchments in southwest China: an ecohydrological perspective, J. Hydrol., 535, 173, 10.1016/j.jhydrol.2016.01.033
Lu, 2012
Mankin, 2019, Mid-latitude freshwater availability reduced by projected vegetation responses to climate change, Nat. Geosci., 10.1038/s41561-019-0480-x
Margulis, 2016, Characterizing the extreme 2015 snowpack deficit in the Sierra Nevada (USA) and the implications for drought recovery, Geophys. Res. Lett., 43, 6341, 10.1002/2016GL068520
Mckee, 1993, 179
Mishra, 2010, A review of drought concepts, J. Hydrol., 391, 204
Nash, 1970, River flow forecasting through conceptual models part I — a discussion of principles, J. Hydrol., 10, 282, 10.1016/0022-1694(70)90255-6
Nguyen, 2021, The 2019 flash droughts in subtropical eastern Australia and their association with large-scale climate drivers, Weather Clim. Extreme, 10.1016/j.wace.2021.100321
Niu, 2015, Exploration of drought evolution using numerical simulations over the Xijiang (West River) basin in South China, J. Hydrol., 526, 68, 10.1016/j.jhydrol.2014.11.029
Oel, 2020, Diagnosing drought using the downstreamness concept: the effect ofreservoir networks on drought evolution, Hydrol. Sci. J., 63, 979
Parry, 2016, Drought termination: concept and characterization, Prog. Phys. Geogr., 40, 743, 10.1177/0309133316652801
Parry, 2016, A systematic assessment of drought termination in the United Kingdom, Hydrol. Earth Syst. Sci., 20, 4265, 10.5194/hess-20-4265-2016
Pena-Gallardo, 2018, Complex influences of meteorological drought time-scales on hydrological droughts in natural basins of the contiguous United States, J. Hydrol., 568, 611, 10.1016/j.jhydrol.2018.11.026
Petalas, 2019, Hydrogeologic behavior of a complex and mature karst aquifer system under drought condition, Environ. Process., 6, 643, 10.1007/s40710-019-00382-x
Qu, 2019, Monitoring extreme agricultural drought over the Horn of Africa (HOA) using remote sensing measurements, Rem. Sens., 11, 1, 10.3390/rs11080902
Sheffield, 2012, Little change in global drought over the past 60 years, Nature, 491, 435, 10.1038/nature11575
Stefan, 2004, Study of meteorological and hydrological drought in southern Romania from observation data, Int. J. Climatol., 24, 871, 10.1002/joc.1039
Tallaksen, 2004
Tu, 2018, Multivariate design of socioeconomic drought and impact of water reservoirs, J. Hydrol., 566, 192, 10.1016/j.jhydrol.2018.09.012
Van Loon, 2015, Hydrological drought explained, WIREs Water, 2, 359, 10.1002/wat2.1085
Van Loon, 2015, Hydrological drought severity explained by climate and catchment characteristics, J. Hydrol., 526, 3, 10.1016/j.jhydrol.2014.10.059
Van Loon, 2014, How climate seasonality modifies drought duration and deficit, J. Geophys. Res., 119, 4640, 10.1002/2013JD020383
Van Loon, 2016, Drought in the anthropocene, Nat. Geosci., 9, 89, 10.1038/ngeo2646
Vicente-Serrano, 2011, Accurate computation of a streamflow drought index, J. Hydrol. Eng., 17, 318, 10.1061/(ASCE)HE.1943-5584.0000433
Wilhite, 1985, Understanding: the drought phenomenon: the role of definitions, Water Int., 10, 111, 10.1080/02508068508686328
Willian, 2018, Transience of the North American High Plains landscape and its impact on surface water, Nature, 561, 528, 10.1038/s41586-018-0532-1
Wu, 2019, Spatiotemporal trends of dryness/wetness duration and severity: the respective contribution of precipitation and temperature, Atmos. Res., 216, 176, 10.1016/j.atmosres.2018.10.005
Wu, 2017, Non-linear relationship of hydrological drought responding to meteorological drought and impact of a large reservoir, J. Hydrol., 551, 495, 10.1016/j.jhydrol.2017.06.029
Wu, 2018, Hydrological drought instantaneous propagation speed based on the variable motion relationship of speed-time process, Water Resour. Res., 54, 9549, 10.1029/2018WR023120
Wu, 2019, Assessing the impact of human regulations on hydrological drought development and recovery based on a ‘simulated-observed’ comparison of the SWAT model, J. Hydrol., 10.1016/j.jhydrol.2019.123990
Wu, 2020, Determination of water required to recover from hydrological drought: perspective from a drought propagation and non-standardized indices, J. Hydrol., 10.1016/j.jhydrol.2020.125227
Wu, 2021, The interactions between hydrological drought evolution and precipitation-streamflow relationship, J. Hydrol., 10.1016/j.jhydrol.2021.126210
Wu, 2022, Dissolved organic carbon response to hydrological drought characteristics: based on long-term measurements of headwater streams, Water Res., 10.1016/j.watres.2022.118252
Yang, 2017, Lags in hydrologic recovery following an extreme drought: assessing the roles of climate and catchment characteristics, Water Resour. Res., 53, 4821, 10.1002/2017WR020683