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Recent Enhanced Deep Troposphere-to-Stratosphere AirMass Transport Accompanying the Weakening Asian MonsoonOACSTPCD

Recent Enhanced Deep Troposphere-to-Stratosphere AirMass Transport Accompanying the Weakening Asian Monsoon

英文摘要

The Asian monsoon(AM)region is a well-known region with prevailing stratosphere-troposphere exchange(STE).However,how the STE across this region changes with the weakening AM remains unclear.Here,we particu-larly diagnose the air mass transport between the planetary boundary layer(PBL)and the stratosphere over the AM region during 1992-2017 using the Lagrangian particle dispersion model FLEXPART based on the ERA-Interim reanalysis data.The results show that both the downward and upward deep STEs exhibit a detectable increasing trend,while the latter,namely,the deep troposphere-to-stratosphere transport(DTST),is relatively more significant.Further analysis reveals that the long-term trend of DTST over the AM region could be partly attributed to changes in the Pacific Walker circulation and the air temperature(especially at upper levels).Additionally,it is found that DTST increases markedly over the tropical oceanic regions,while the increasing DTST into the stratosphere can be attrib-uted to the enhanced air masses originated from the PBL over the terrestrial regions,where large amounts of pollut-ant emissions occur.The results imply that the influence of the DTST on the chemical composition and the climate of the stratosphere over the AM region is expected to become increasingly important,and is thereby of relevance to cli-mate projection in an evolving climate.

Bin CHEN;Jianzhong MA;Wei ZHANG;Jianchun BIAN;Tianliang ZHAO;Xiangde XU

State Key Laboratory of Severe Weather,Chinese Academy of Meteorological Sciences,China Meteorological Administration,Beijing 100081,ChinaDepartment of Plants,Soils and Climate,Utah State University,UT 84322,USAKey Laboratory of Middle Atmosphere and Global Environment Observation,Institute of Atmospheric Physics,Chinese Academy of Sciences,Beijing 100029,ChinaCollaborative Innovation Center on Forecast and Evaluation of Meteorological Disasters,Key Laboratory for Aerosol-Cloud-Precipitation of China Meteorological Administration,Nanjing University of Information Science & Technology,Nanjing 210044,China

stratosphere-troposphere exchange(STE)air mass transportdeep troposphere-to-stratosphere trans-port(DTST)Asian monsoon(AM)pollution

《气象学报(英文版)》 2024 (004)

708-719 / 12

Supported by the National Key Research and Development Program of China(2023YFC3010700),Second Tibetan Plateau Compre-hensive Scientific Expedition and Research Program(2019QZKK0105),and Science and Technology Development Fund of Chinese Academy of Meteorological Sciences(2023KJ027 and 2024KJ012).

10.1007/s13351-024-3155-5

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