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如何理解珠穆朗玛峰气溶胶-云降水激活效应?(英文)

Understanding clouds and precipitation over the Mount Qomolangma:how does the aerosol activation effect exist?

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【作者】 徐祥德蔡雯悦赵天良张华郭学良刘文清张天舒赵润泽吴翀李跃清王磊颜鹏杨昌军

【Author】 Xiangde Xu;Wenyue Cai;Tianliang Zhao;Hua Zhang;Xueliang Guo;Wenqing Liu;Tianshu Zhang;Runze Zhao;Chong Wu;Yueqing Li;Lei Wang;Peng Yan;Changjun Yang;State Key Laboratory of Severe Weather Meteorological Science and Technology, Chinese Academy of Meteorological Sciences;Key Laboratory for Aerosol-Cloud-Precipitation of China Meteorological Administration, Nanjing University of Information Science and Technology;Institute of Atmospheric Physics, Chinese Academy of Sciences;Key Laboratory of Environment Optics and Technology, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences;Key Laboratory of Radiometric Calibration and Validation for Environmental Satellites, National Satellite Meteorological Center (National Centre for Space Weather),China Meteorological Administration;Chengdu Institute of Plateau Meteorology,China Meteorological Administration, Heavy Rain and Drought-Flood Disaster in Plateau and Basin Key Laboratory of Sichuan Province;Meteorological Observation Center,China Meteorological Administration;

【通讯作者】 蔡雯悦;赵天良;

【机构】 State Key Laboratory of Severe Weather Meteorological Science and Technology, Chinese Academy of Meteorological SciencesKey Laboratory for Aerosol-Cloud-Precipitation of China Meteorological Administration, Nanjing University of Information Science and TechnologyInstitute of Atmospheric Physics, Chinese Academy of SciencesKey Laboratory of Environment Optics and Technology, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of SciencesKey Laboratory of Radiometric Calibration and Validation for Environmental Satellites, National Satellite Meteorological Center (National Centre for Space Weather),China Meteorological AdministrationChengdu Institute of Plateau Meteorology,China Meteorological Administration, Heavy Rain and Drought-Flood Disaster in Plateau and Basin Key Laboratory of Sichuan ProvinceMeteorological Observation Center,China Meteorological Administration

【摘要】 Can the “Roof of the world” Mount Qomolangma(MQ) serve as a “natural laboratory” for the activation effect of aerosols on the cloud-precipitation process? Here, we carried out the vertical observations of aerosols, clouds, and precipitation at the MQ, where the dual-radar active remote sensing technique is integrated with precipitation observation for the first time. It is found from the observational study that during the Indian summer monsoon, aerosols from South Asia have a distinct activation effect on the cloud-precipitation process over the MQ. Under dynamic lifting, the increase in aerosols, which inhibits and delays weak precipitation over the MQ, instead intensifies the development of clouds over the MQ,leading to heavy precipitation on the north slope. The synergy of the MQ thermal-dynamic driving mechanism and the aerosol activation effect can trigger the deep convection in the precipitation process on the north slope of the MQ. Cloud development is more intense with the aerosol activation effect, and the diurnal cycle of convective clouds in the vertical change over the MQ presents a lag response to changing aerosols. From the perspective of climate impact on interannual variations, it can also be found that the frequency of light rain over the MQ present the significantly decreased trend, while the frequency of moderate to heavy precipitation on the north slope has a significantly increased trend, revealing the differentiated changes in the precipitation on the south and north slopes of the MQ under the influence of the aerosol activation effect on the cloud-precipitation process.

【Abstract】 Can the “Roof of the world” Mount Qomolangma(MQ) serve as a “natural laboratory” for the activation effect of aerosols on the cloud-precipitation process? Here, we carried out the vertical observations of aerosols, clouds, and precipitation at the MQ, where the dual-radar active remote sensing technique is integrated with precipitation observation for the first time. It is found from the observational study that during the Indian summer monsoon, aerosols from South Asia have a distinct activation effect on the cloud-precipitation process over the MQ. Under dynamic lifting, the increase in aerosols, which inhibits and delays weak precipitation over the MQ, instead intensifies the development of clouds over the MQ,leading to heavy precipitation on the north slope. The synergy of the MQ thermal-dynamic driving mechanism and the aerosol activation effect can trigger the deep convection in the precipitation process on the north slope of the MQ. Cloud development is more intense with the aerosol activation effect, and the diurnal cycle of convective clouds in the vertical change over the MQ presents a lag response to changing aerosols. From the perspective of climate impact on interannual variations, it can also be found that the frequency of light rain over the MQ present the significantly decreased trend, while the frequency of moderate to heavy precipitation on the north slope has a significantly increased trend, revealing the differentiated changes in the precipitation on the south and north slopes of the MQ under the influence of the aerosol activation effect on the cloud-precipitation process.

【基金】 supported by the Second Tibetan Plateau Scientific Expedition and Research Program (STEP, 2019QZKK0105);the Major Science and Technology Project of Xizang Autonomous Region (XZ202402ZD0006-06)
  • 【文献出处】 Science Bulletin ,科学通报(英文版) , 编辑部邮箱 ,2025年21期
  • 【分类号】P426
  • 【下载频次】5
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