Enhanced spring convective barrier for monsoons in a warmer world?
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Seth, Anji
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Enhanced spring convective barrier for monsoons in a warmer world?
Abstract
Twenty-first century climate model projections show an amplification of the annual cycle in tropical precipitation with increased strength in both wet and dry seasons, but uncertainty is large and few studies have examined transition seasons. Here we analyze coupled climate model projections of global land monsoons and show a redistribution of precipitation from spring to summer in northern (North America, West Africa and Southeast Asia) and southern (South America, Southern Africa) regions. The annual cycle changes are global in scale. Two mechanisms, remote (based on tropospheric stability) and local (based on low level and surface moisture), are evaluated through the annual cycle. Increases in tropospheric stability persist from winter into spring and are reinforced by a reduction in surface moisture conditions, suggesting that in spring both remote and local mechanisms act to inhibit convection. This enhanced spring convective barrier leads to reduced early season rainfall; however
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URI: https://repositorio.uchile.cl/handle/2250/154802
DOI: 10.1007/s10584-010-9973-8
ISSN: 01650009
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Climatic Change, Volumen 104, Issue 2, 2018, Pages 403-414
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