A standardized index for assessing sub-monthly compound dry and hot conditions with application in China

<p>Compound dry and hot conditions frequently cause large impacts on ecosystems and societies worldwide. A suite of indices is available for the assessment of droughts and heatwaves, yet there is no index available for incorporating the joint variability of dry and hot conditions at the sub-mo...

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Main Authors: J. Li, Z. Wang, X. Wu, J. Zscheischler, S. Guo, X. Chen
Format: Article
Language:English
Published: Copernicus Publications 2021-03-01
Series:Hydrology and Earth System Sciences
Online Access:https://hess.copernicus.org/articles/25/1587/2021/hess-25-1587-2021.pdf
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spelling doaj-10e912b43f254bff8bf36c7cf3a3df6e2021-03-30T09:25:08ZengCopernicus PublicationsHydrology and Earth System Sciences1027-56061607-79382021-03-01251587160110.5194/hess-25-1587-2021A standardized index for assessing sub-monthly compound dry and hot conditions with application in ChinaJ. Li0Z. Wang1Z. Wang2X. Wu3X. Wu4J. Zscheischler5J. Zscheischler6J. Zscheischler7S. Guo8X. Chen9School of Civil Engineering and Transportation, State Key Laboratory of Subtropical Building Science, South China University of Technology, Guangzhou 510641, ChinaSchool of Civil Engineering and Transportation, State Key Laboratory of Subtropical Building Science, South China University of Technology, Guangzhou 510641, ChinaGuangdong Engineering Technology Research Center of Safety and Greenization for Water Conservancy Project, Guangzhou 510641, ChinaSchool of Civil Engineering and Transportation, State Key Laboratory of Subtropical Building Science, South China University of Technology, Guangzhou 510641, ChinaGuangdong Engineering Technology Research Center of Safety and Greenization for Water Conservancy Project, Guangzhou 510641, ChinaClimate and Environmental Physics, University of Bern, Sidlerstrasse 5, 3012 Bern, SwitzerlandOeschger Centre for Climate Change Research, University of Bern, Bern, SwitzerlandDepartment of Computational Hydrosystems, Helmholtz Centre for Environmental Research – UFZ, Leipzig, GermanyState Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University, Wuhan 430072, ChinaCenter for Water Resource and Environment, Sun Yat-Sen University, Guangzhou 510275, China<p>Compound dry and hot conditions frequently cause large impacts on ecosystems and societies worldwide. A suite of indices is available for the assessment of droughts and heatwaves, yet there is no index available for incorporating the joint variability of dry and hot conditions at the sub-monthly scale. Here we introduce a daily-scale index, called the standardized compound drought and heat index (SCDHI), to assess compound dry-hot conditions. The SCDHI is based on a daily drought index (the standardized antecedent precipitation evapotranspiration index – SAPEI), the daily-scale standardized temperature index (STI), and a joint probability distribution method. The new index is verified against real-world compound dry and hot events and associated observed vegetation impacts in China. The SCDHI can not only capture compound dry and hot events at both monthly and sub-monthly scales, but is also a good indicator for associated vegetation impacts. Using the SCDHI, we quantify the frequency, severity, duration, and intensity of compound dry-hot events during the historical period and assess the ability of climate models to reproduce these characteristics in China. We find that compound events whose severity is at least light and which last longer than 2 weeks generally persisted for 20–35 d in China. Southern China suffered from compound events most frequently, and the most severe compound events were mainly detected in this region. Climate models generally overestimate the frequency, duration, severity, and intensity of compound events in China, especially for western regions, which can be attributed to a too strong dependence between the SAPEI and STI in those models. The SCDHI provides a new tool to quantify sub-monthly characteristics of compound dry and hot events and to monitor their initiation, development, and decay. This is important information for decision-makers and stakeholders to release early and timely warnings.</p>https://hess.copernicus.org/articles/25/1587/2021/hess-25-1587-2021.pdf
collection DOAJ
language English
format Article
sources DOAJ
author J. Li
Z. Wang
Z. Wang
X. Wu
X. Wu
J. Zscheischler
J. Zscheischler
J. Zscheischler
S. Guo
X. Chen
spellingShingle J. Li
Z. Wang
Z. Wang
X. Wu
X. Wu
J. Zscheischler
J. Zscheischler
J. Zscheischler
S. Guo
X. Chen
A standardized index for assessing sub-monthly compound dry and hot conditions with application in China
Hydrology and Earth System Sciences
author_facet J. Li
Z. Wang
Z. Wang
X. Wu
X. Wu
J. Zscheischler
J. Zscheischler
J. Zscheischler
S. Guo
X. Chen
author_sort J. Li
title A standardized index for assessing sub-monthly compound dry and hot conditions with application in China
title_short A standardized index for assessing sub-monthly compound dry and hot conditions with application in China
title_full A standardized index for assessing sub-monthly compound dry and hot conditions with application in China
title_fullStr A standardized index for assessing sub-monthly compound dry and hot conditions with application in China
title_full_unstemmed A standardized index for assessing sub-monthly compound dry and hot conditions with application in China
title_sort standardized index for assessing sub-monthly compound dry and hot conditions with application in china
publisher Copernicus Publications
series Hydrology and Earth System Sciences
issn 1027-5606
1607-7938
publishDate 2021-03-01
description <p>Compound dry and hot conditions frequently cause large impacts on ecosystems and societies worldwide. A suite of indices is available for the assessment of droughts and heatwaves, yet there is no index available for incorporating the joint variability of dry and hot conditions at the sub-monthly scale. Here we introduce a daily-scale index, called the standardized compound drought and heat index (SCDHI), to assess compound dry-hot conditions. The SCDHI is based on a daily drought index (the standardized antecedent precipitation evapotranspiration index – SAPEI), the daily-scale standardized temperature index (STI), and a joint probability distribution method. The new index is verified against real-world compound dry and hot events and associated observed vegetation impacts in China. The SCDHI can not only capture compound dry and hot events at both monthly and sub-monthly scales, but is also a good indicator for associated vegetation impacts. Using the SCDHI, we quantify the frequency, severity, duration, and intensity of compound dry-hot events during the historical period and assess the ability of climate models to reproduce these characteristics in China. We find that compound events whose severity is at least light and which last longer than 2 weeks generally persisted for 20–35 d in China. Southern China suffered from compound events most frequently, and the most severe compound events were mainly detected in this region. Climate models generally overestimate the frequency, duration, severity, and intensity of compound events in China, especially for western regions, which can be attributed to a too strong dependence between the SAPEI and STI in those models. The SCDHI provides a new tool to quantify sub-monthly characteristics of compound dry and hot events and to monitor their initiation, development, and decay. This is important information for decision-makers and stakeholders to release early and timely warnings.</p>
url https://hess.copernicus.org/articles/25/1587/2021/hess-25-1587-2021.pdf
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