Equatorward shift of the South Asian high in response to anthropogenic forcing

被引:0
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作者
Xia Qu
Gang Huang
Kaiming Hu
Shang-Ping Xie
Yan Du
Xiao-Tong Zheng
Lin Liu
机构
[1] Chinese Academy of Sciences,Center for Monsoon System Research, Institute of Atmospheric Physics
[2] Plateau Atmosphere and Environment Key Laboratory of Sichuan Province,Key Laboratory of Regional Climate
[3] Chinese Academy of Sciences,Environment Research for Temperate East Asia, Institute of Atmospheric Physics
[4] Ocean University of China,Physical Oceanography Laboratory and Ocean–Atmosphere Interaction and Climate Laboratory
[5] Chinese Academy of Sciences,Key Laboratory of Tropical Marine Environmental Dynamics, South China Sea Institute of Oceanology
[6] State Oceanic Administration,The First Institute of Oceanography
[7] Nanjing University of Information Science & Technology,Collaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters
[8] University of Hawaii at Manoa,International Pacific Research Center and Department of Meteorology
[9] University of California,Scripps Institution of Oceanography
来源
关键词
Indian Ocean; Equatorial Indian Ocean; South Asian High; Condensational Heating; Anomalous Westerly;
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中图分类号
学科分类号
摘要
The South Asian high (SAH) is a huge anticyclone in the upper troposphere. It influences the climate and the distribution of trace constituents and pollutants. The present study documents the change in the SAH and precipitation under global warming, as well as the possible link between the changes, based on 17 Coupled Model Intercomparison Project Phase 5 (CMIP5) model simulations. The CMIP5 historical simulation reproduces reasonably the tropospheric circulation (including the SAH), precipitation, and moisture. Under global warming, more than 75 % of the CMIP5 models project a southward shift of the SAH. The southward shift is more significant in the models with stronger anticyclonic circulation in the south part of the climatological SAH. The precipitation response displays a contrasting feature: negative over the southeastern equatorial Indian Ocean (IO) and positive over the tropical northern IO, the Bay of Bengal, and the equatorial western Pacific. The results of a linear baroclinic model (LBM) show that the regional rainfall changes over the Bay of Bengal and the equatorial western Pacific have a main contribution to the southward shift of the SAH. In addition, the precipitation and the surface wind responses over the Indo-Pacific region are well coupled. On one hand, the surface wind anomaly affects the rainfall response through altering the SST and moisture. On the other hand, the condensational heating released by regional rainfall changes sustains the surface wind response.
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页码:113 / 122
页数:9
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