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Drought under global warming
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Permanent Link:
http://dpanther.fiu.edu/dpService/dpPurlService/purl/FI15061002/00001
Material Information
Title:
Drought under global warming a review
Series Title:
Wire's Climate Change Advanced Review
Creator:
Aiguo Dai
Publisher:
John Wiley & Sons, Ltd.
Publication Date:
2010
Language:
English
Subjects
Subjects / Keywords:
climate change
global warming
droughts
Notes
Abstract:
This article reviews recent literature on drought of the last millennium, followed by an update on global aridity changes from 1950 to 2008. Projected future aridity is presented based on recent studies and our analysis of model simulations. Dry periods lasting for years to decades have occurred many times during the last millennium over, for example, North America, West Africa, and East Asia. These droughts were likely triggered by anomalous tropical sea surface temperatures (SSTs), with La Nin˜ a-like SST anomalies leading to drought in North America, and El-Nin˜ o-like SSTs causing drought in East China. Over Africa, the southward shift of the warmest SSTs in the Atlantic and warming in the Indian Ocean are responsible for the recent Sahel droughts. Local feedbacks may enhance and prolong drought. Global aridity has increased substantially since the 1970s due to recent drying over Africa, southern Europe, East and South Asia, and eastern Australia. Although El Nin˜ o-Southern Oscillation (ENSO), tropical Atlantic SSTs, and Asian monsoons have played a large role in the recent drying, recent warming has increased atmospheric moisture demand and likely altered atmospheric circulation patterns, both contributing to the drying. Climate models project increased aridity in the 21st century over most of Africa, southern Europe and the Middle East, most of the Americas, Australia, and Southeast Asia. Regions like the United States have avoided prolonged droughts during the last 50 years due to natural climate variations, but might see persistent droughts in the next 20–50 years. Future efforts to predict drought will depend on models’ ability to predict tropical SSTs.
Record Information
Source Institution:
Florida International University
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