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西风-季风协同作用塑造青藏高原暖期湖泊扩张的空间不均衡性(英文)

The westerlies-monsoon interaction shaped asymmetric lake expansions over the Tibetan Plateau in warming periods

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【作者】 隆浩张静然张帅侯彦冬毋宇斌杨娜张灿程良清赵志军程军沈吉

【Author】 Hao Long;Jingran Zhang;Shuai Zhang;Yandong Hou;Yubin Wu;Na Yang;Can Zhang;Liangqing Cheng;Zhijun Zhao;Jun Cheng;Ji Shen;State Key Laboratory of Lake and Watershed Science for Water Security,Nanjing Institute of Geography and Limnology,Chinese Academy of Sciences;School of Geography,Nanjing Normal University,Jiangsu Centre for Collaborative Innovation in Geographical Information Resource Development and Application,State Key Laboratory of Climate System Prediction and Risk Management;University of Chinese Academy of Sciences;Group of Alpine Paleoecology and Human Adaptation (ALPHA),State Key Laboratory of Tibetan Plateau Earth System,Resources and Environment (TPESRE),Institute of Tibetan Plateau Research,Chinese Academy of Sciences;School of Geographic Science and Tourism,Nanyang Normal University;Key Laboratory of Meteorological Disaster,Ministry of Education (KLME)/Joint International Research Laboratory of Climate and Environment Change(ILCEC)/Collaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters (CIC-FEMD),Nanjing University of Information Science and Technology;School of Geography and Ocean Science,Nanjing University;

【通讯作者】 隆浩;

【机构】 State Key Laboratory of Lake and Watershed Science for Water Security,Nanjing Institute of Geography and Limnology,Chinese Academy of SciencesSchool of Geography,Nanjing Normal University,Jiangsu Centre for Collaborative Innovation in Geographical Information Resource Development and Application,State Key Laboratory of Climate System Prediction and Risk ManagementUniversity of Chinese Academy of SciencesGroup of Alpine Paleoecology and Human Adaptation (ALPHA),State Key Laboratory of Tibetan Plateau Earth System,Resources and Environment (TPESRE),Institute of Tibetan Plateau Research,Chinese Academy of SciencesSchool of Geographic Science and Tourism,Nanyang Normal UniversityKey Laboratory of Meteorological Disaster,Ministry of Education (KLME)/Joint International Research Laboratory of Climate and Environment Change(ILCEC)/Collaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters (CIC-FEMD),Nanjing University of Information Science and TechnologySchool of Geography and Ocean Science,Nanjing University

【摘要】 Modelling studies and recent observations suggest that the westerlies-monsoon interactions(WMI) have led to a spatial imbalance in lake expansions across the Tibetan Plateau(TP) during the past decades under anthropogenic warming. However, whether such imbalance reflects a short-term phenomenon or a long-term climatic trend remains unclear. Here, we present a 240,000-year lake level reconstruction from the inner TP to examine the extent to which WMI also operated for previous interglacials, natural warm regimes with large-scale climatic boundary changes. Results suggest pronounced lake expansions accompanied by enhanced rainfall during the recent three interglacials, marine isotope stage(MIS) 7, 5,and 1, notably with varying amplitudes of ‘‘V” shape(MIS 5 < MIS 7 or MIS 1). This lake expansion pattern is coherent with North Hemisphere ice volume(NHIV) variations among these interglacials. Model simulation further suggests more NHIV may impact WMI by modulating westerlies’ position, causing rainfall increase and lake expansion over the inner TP relative to its marginal areas. Our findings confirm that the projected importance of WMI to drive the spatial heterogeneity of hydroclimate changes has been maintained during the past natural warm periods. We thus predict that the climate warming and NHIV decreasing will further amplify the spatial imbalance of lake expansions across the TP, with more pronounced lake expansions in the north relative to the south.

【Abstract】 Modelling studies and recent observations suggest that the westerlies-monsoon interactions(WMI) have led to a spatial imbalance in lake expansions across the Tibetan Plateau(TP) during the past decades under anthropogenic warming. However, whether such imbalance reflects a short-term phenomenon or a long-term climatic trend remains unclear. Here, we present a 240,000-year lake level reconstruction from the inner TP to examine the extent to which WMI also operated for previous interglacials, natural warm regimes with large-scale climatic boundary changes. Results suggest pronounced lake expansions accompanied by enhanced rainfall during the recent three interglacials, marine isotope stage(MIS) 7, 5,and 1, notably with varying amplitudes of ‘‘V” shape(MIS 5 < MIS 7 or MIS 1). This lake expansion pattern is coherent with North Hemisphere ice volume(NHIV) variations among these interglacials. Model simulation further suggests more NHIV may impact WMI by modulating westerlies’ position, causing rainfall increase and lake expansion over the inner TP relative to its marginal areas. Our findings confirm that the projected importance of WMI to drive the spatial heterogeneity of hydroclimate changes has been maintained during the past natural warm periods. We thus predict that the climate warming and NHIV decreasing will further amplify the spatial imbalance of lake expansions across the TP, with more pronounced lake expansions in the north relative to the south.

【基金】 supported by the Excellent Research Group Program for Tibetan Plateau Earth System (42588201);the Second Tibetan Plateau Scientific Expedition and Research Program (2019QZKK0205);the National Natural Science Foundation of China (42371012 and 42302211);the Youth Innovation Promotion Association CAS (Y201959)
  • 【文献出处】 Science Bulletin ,科学通报(英文版) , 编辑部邮箱 ,2025年19期
  • 【分类号】P343.3
  • 【下载频次】13
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