Progress in Research of Stratosphere—Troposphere Interactions:Application of Isentropic Potential Vorticity Dynamics and the Effects of the Tibetan Plateau

被引:2
作者
任荣彩 [1 ]
吴国雄 [1 ]
CAI Ming [2 ]
孙舒悦 [1 ,3 ]
刘新 [4 ]
李伟平 [5 ]
机构
[1] State Key Laboratory of Numerical Modeling for Atmospheric Sciences and Geophysical Fluid Dynamics,Institute of Atmospheric Physics,Chinese Academy of Sciences
[2] Department of Earth,Ocean,and Atmospheric Science,Florida State University
[3] University of Chinese Academy of Sciences
[4] Qomolangma Atmospheric and Environmental Observation and Research Station,Institute of Tibetan Plateau Research,Chinese Academy of Sciences
[5] Beijing Climate Center,China Meteorological Administration
基金
中国国家自然科学基金;
关键词
isentropic potential vorticity theory; stratosphere-troposphere interactions; Tibetan Plateau;
D O I
暂无
中图分类号
P434 [大气环流];
学科分类号
0706 ; 070601 ;
摘要
This paper reviews recent progress in understanding isentropic potential vorticity(PV) dynamics during interactions between the stratosphere and troposphere,including the spatial and temporal propagation of circulation anomalies associated with the winter polar vortex oscillation and the mechanisms of stratospheretroposphere coupling in the global mass circulation framework.The origins and mechanisms of interannual variability in the stratospheric circulation are also reviewed.Particular attention is paid to the role of the Tibetan Plateau as a PV source(via its thermal forcing) in the global and East Asian atmospheric circulation.Diagnosis of meridional isentropic PV advection over the Tibetan Plateau and East Asia indicates that the distributions of potential temperature and PV over the east flank of the Tibetan Plateau and East Asia favor a downward and southward isentropic transport of high PV from the stratosphere to the troposphere.This transport manifests the possible influence of the Tibetan Plateau on the dynamic coupling between the stratosphere and troposphere during summer,and may provide a new framework for understanding the climatic effects of the Tibetan Plateau.
引用
收藏
页码:714 / 731
页数:18
相关论文
共 43 条
[1]   Observational responses of stratospheric sudden warming to blocking highs and its feedbacks on the troposphere [J].
Lu ChunHui ;
Ding YiHui .
CHINESE SCIENCE BULLETIN, 2013, 58 (12) :1374-1384
[2]   夏季青藏高原对流层-平流层交换过程及其气候效应的若干问题 [J].
卞建春 ;
范秋君 ;
严仁嫦 .
气象科技进展, 2013, 3 (02) :22-28
[3]   东亚冬季风气候变异和机理以及平流层过程的影响 [J].
陈文 ;
魏科 ;
王林 ;
周群 .
大气科学, 2013, (02) :425-438
[4]   两个大气环流模式SAMIL和BCCAGCM对北半球冬季极涡振荡的模拟对比 [J].
刘玉镇 ;
任荣彩 ;
何编 .
大气科学, 2012, 36 (06) :1191-1206
[5]   过去60年中3—5年时间尺度的强ENSO过程与平流层环流异常的滞后耦合及其机理 [J].
任荣彩 .
气象学报, 2012, 70 (03) :520-535
[6]  
Seasonality of the Lagged Relationship between ENSO and the Northern Hemispheric Polar Vortex Variability[J]. REN Rong-Cai State Key Lab of Atmospheric Sciences and Geophysical Fluid Dynamics(LASG),Institute of Atmospheric Physics,Chinese Academy of Sciences,Beijing 100029,China.Atmospheric and Oceanic Science Letters. 2012(02)
[7]   亚洲夏季风是低层污染物进入平流层的重要途径 [J].
卞建春 ;
严仁嫦 ;
陈洪滨 .
大气科学 , 2011, (05) :897-902
[8]  
冬季青藏高原大气热状况分析Ⅰ:气候平均[J]. 宇婧婧,刘屹岷,吴国雄.气象学报. 2011(01)
[9]  
冬季青藏高原大气热状况分析Ⅱ:年际变化[J]. 宇婧婧,刘屹岷,吴国雄.气象学报. 2011(01)
[10]   平流层极涡振荡与ENSO热带海温异常的时空联系 [J].
任荣彩 ;
向纯怡 .
气象学报, 2010, 68 (03) :285-295