[张贴报告]Connection between the Tropical Pacific and Indian Ocean and Temperature Anomaly across West Antarctic

Connection between the Tropical Pacific and Indian Ocean and Temperature Anomaly across West Antarctic
编号:416 稿件编号:475 访问权限:仅限参会人 更新:2024-04-10 19:57:52 浏览:42次 张贴报告

报告开始:2024年05月18日 10:45 (Asia/Shanghai)

报告时间:1min

所在会议:[SP] 张贴报告专场 » [sp12] 主题12、大气物理与气象气候

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摘要
West Antarctic and the Antarctic Peninsula have experienced dramatic warming in austral spring since the 1970s. Using observations and the Community Atmosphere Model version 4 (CAM4), this study explores the physical mechanism by which the tropical Pacific and Indian Ocean temperature anomaly mode (PIM) affects the dipolar surface air temperature (SAT) anomalies across the West Antarctic in austral spring. The positive phase of the PIM, characterized by positive sea surface temperature anomalies (SSTAs) in the tropical central-eastern Pacific and western Indian Ocean and negative SSTAs in the Maritime Continent, can generate two branches of stationary Rossby wave trains propagating from the tropical central Pacific and southeastern Indian Ocean to the West Antarctic, with an anticyclonic anomaly appearing over the Amundsen Sea. The northerlies advect warmer air to the Ross–Amundsen Seas, but southerlies advect colder air to the Antarctic Peninsula–Weddell Sea, resulting in the dipole of SAT anomalies over the West Antarctic. In this process, the role of tropical central-eastern Pacific SSTAs dominate, and it is amplified by the SSTAs around the Maritime Continent. The SSTAs in the western Indian Ocean combined with the SSTAs over the Maritime Continent further contribute to the western pole of the SAT. Only simulation that includes a prescribed PIM forcing can exactly reproduce the observations of the dipolar SAT response across the West Antarctic, indicating the need to treat the tropical Pacific and Indian Oceans as a unified whole.
关键字
West Antarctic,Tropical Pacific and Indian Ocean,surface air temperature,interannual variability
报告人
张萍
博士后 中国科学院大气物理研究所

稿件作者
张萍 中国科学院大气物理研究所
段安民 厦门大学海洋与地球学院
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