节点文献

地球三极气候的遥相关(英文)

Climate teleconnections among the Earth’s three poles

  • 推荐 CAJ下载
  • PDF下载
  • 不支持迅雷等下载工具,请取消加速工具后下载。

【作者】 段安民李新胡文婷车涛胡俊彭玉琢张超胡蝶汤雨恒潘杼垒王启璐吴国雄

【Author】 Anmin Duan;Xin Li;Wenting Hu;Tao Che;Jun Hu;Yuzhuo Peng;Chao Zhang;Die Hu;Yuheng Tang;Zhulei Pan;Qilu Wang;Guoxiong Wu;Center for Marine Meteorology and Climate Change, State Key Laboratory of Marine Environmental Science, College of Ocean and Earth Sciences, Xiamen University;National Tibetan Plateau Data Center, Institute of Tibetan Plateau Research, Chinese Academy of Sciences;State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics (LASG), Institute of Atmospheric Physics, Chinese Academy of Sciences;Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences;

【通讯作者】 段安民;李新;

【机构】 Center for Marine Meteorology and Climate Change, State Key Laboratory of Marine Environmental Science, College of Ocean and Earth Sciences, Xiamen UniversityNational Tibetan Plateau Data Center, Institute of Tibetan Plateau Research, Chinese Academy of SciencesState Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics (LASG), Institute of Atmospheric Physics, Chinese Academy of SciencesNorthwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences

【摘要】 The Arctic, Antarctic, and Tibetan Plateau(TP) are often referred to as Earth’s three poles, and they exert outsized influence on the global climate. The three poles have undergone accelerating loss of sea ice, ice shelves, and/or glaciers, accompanied by pronounced warming in the Arctic and TP and region-specific warming in Antarctica. Despite their geographical remoteness, the three poles exhibit evident linkages,yet substantial gaps remain in our understanding of their climate teleconnections. This review summarizes the interactions among Earth’s three poles. The three poles are dynamically linked through a hierarchy of pathways. The Arctic–TP interactions are dominated by stationary Rossby-wave trains triggered by sea-ice and snow anomalies and reinforced by land-surface feedback over the plateau. The Arctic–Antarctic coupling relies on ocean heat transport through the Atlantic Meridional Overturning Circulation and on the modulation of tropical Atlantic temperature and the Intertropical Convergence Zone. The Antarctic–TP signals travel via sea-surface temperature anomalies in the Indian Ocean forced by the Antarctic Oscillation, which propagate northward and excite wave trains and transport moisture onto the TP. Closing the remaining knowledge gaps will require coordinated paleoclimate constraints,targeted field campaigns over the Southern Ocean and TP, and next-generation Earth-system models equipped with machine-learning techniques. Such integrative efforts are essential for more reliable projections of compound extremes and for informing adaptation strategies.

【Abstract】 The Arctic, Antarctic, and Tibetan Plateau(TP) are often referred to as Earth’s three poles, and they exert outsized influence on the global climate. The three poles have undergone accelerating loss of sea ice, ice shelves, and/or glaciers, accompanied by pronounced warming in the Arctic and TP and region-specific warming in Antarctica. Despite their geographical remoteness, the three poles exhibit evident linkages,yet substantial gaps remain in our understanding of their climate teleconnections. This review summarizes the interactions among Earth’s three poles. The three poles are dynamically linked through a hierarchy of pathways. The Arctic–TP interactions are dominated by stationary Rossby-wave trains triggered by sea-ice and snow anomalies and reinforced by land-surface feedback over the plateau. The Arctic–Antarctic coupling relies on ocean heat transport through the Atlantic Meridional Overturning Circulation and on the modulation of tropical Atlantic temperature and the Intertropical Convergence Zone. The Antarctic–TP signals travel via sea-surface temperature anomalies in the Indian Ocean forced by the Antarctic Oscillation, which propagate northward and excite wave trains and transport moisture onto the TP. Closing the remaining knowledge gaps will require coordinated paleoclimate constraints,targeted field campaigns over the Southern Ocean and TP, and next-generation Earth-system models equipped with machine-learning techniques. Such integrative efforts are essential for more reliable projections of compound extremes and for informing adaptation strategies.

【基金】 supported by the National Natural Science Foundation of China (42030602 and 42275032)
  • 【文献出处】 Science Bulletin ,科学通报(英文版) , 编辑部邮箱 ,2025年22期
  • 【分类号】P46
  • 【下载频次】7
节点文献中: 

本文链接的文献网络图示:

本文的引文网络