Technical note: A stochastic framework for identification and evaluation of flash drought
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Published:2023-03-14
Issue:5
Volume:27
Page:1077-1087
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ISSN:1607-7938
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Container-title:Hydrology and Earth System Sciences
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language:en
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Short-container-title:Hydrol. Earth Syst. Sci.
Author:
Li Yuxin, Chen Sisi, Yin Jun, Yuan XingORCID
Abstract
Abstract. The rapid development of droughts, referred to as flash droughts, can pose serious impacts on agriculture, the ecosystem, human health, and society. However, its definition, using pentad-averaged soil moisture, could result in low accuracy in assessing the drought occurrence, making it difficult to analyze various factors controlling the formation of flash droughts. Here we used a stochastic water balance framework to quantify the whole probability structure of the timing for soil moisture dropping from a higher level to a lower one. Based on this framework, we can theoretically examine the nonlinear relationship between the rapid decline rate of soil moisture and various hydrometeorological factors and identify possible flash drought risks caused by less rainfall (e.g., long dry spells), higher evapotranspiration (e.g., extreme heat waves), lower soil water storage capacity (e.g., deforestation), or a combination thereof. Applying this framework to the global datasets, we obtained global maps of the average time for drought development and the risks of flash drought. We found that possible flash drought development in humid regions, such as southern China and the northeastern United States, calls particular attention to the need for flash drought monitoring and mitigation.
Funder
National Natural Science Foundation of China Natural Science Foundation of Jiangsu Province
Publisher
Copernicus GmbH
Subject
General Earth and Planetary Sciences,General Engineering,General Environmental Science
Reference62 articles.
1. AghaKouchak, A., Farahmand, A., Melton, F. S., Teixeira, J., Anderson, M. C.,
Wardlow, B. D., and Hain, C. R.: Remote sensing of drought: Progress,
challenges and opportunities, Rev. Geophys., 53, 452–480,
https://doi.org/10.1002/2014RG000456, 2015. a 2. Basara, J. B., Christian, J. I., Wakefield, R. A., Otkin, J. A., Hunt, E. H.,
and Brown, D. P.: The evolution, propagation, and spread of flash drought in
the Central United States during 2012, Environ. Res. Lett., 14,
084025, https://doi.org/10.1088/1748-9326/ab2cc0, 2019. a 3. Betts, A. K., Ball, J. H., Beljaars, A. C. M., Miller, M. J., and Viterbo,
P. A.: The land surface-atmosphere interaction: A review based on
observational and global modeling perspectives, J. Geophys. Res.-Atmos., 101, 7209–7225,
https://doi.org/10.1029/95JD02135, 1996. a 4. Cerasoli, S., Yin, J., and Porporato, A.: Cloud cooling effects of
afforestation and reforestation at midlatitudes, Proc. Natl. Acad. Sci., 118, e2026241118, https://doi.org/10.1073/pnas.2026241118, 2021. a, b 5. Chen, L., Gottschalck, J., Hartman, A., Miskus, D., Tinker, R., and Artusa, A.:
Flash Drought Characteristics Based on US Drought Monitor, Atmosphere, 10,
498, https://doi.org/10.3390/atmos10090498, 2019. a
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