Time-lagged impact of spring sensible heat over the Tibetan Plateau on the summer rainfall anomaly in East China: case studies using the WRF model

被引:6
作者
Ziqian Wang
Anmin Duan
Guoxiong Wu
机构
[1] Chinese Academy of Sciences (CAS),State Key Laboratory of Numerical Modelling for Atmospheric Sciences and Geophysical Fluid Dynamics (LASG), Institute of Atmospheric Physics (IAP)
[2] University of Chinese Academy of Sciences,undefined
来源
Climate Dynamics | 2014年 / 42卷
关键词
Spring sensible heat (SH); Tibetan Plateau (TP); East Asian summer monsoon (EASM); Summer rainfall;
D O I
暂无
中图分类号
学科分类号
摘要
This study explores the time-lagged impact of the spring sensible heat (SH) source over the Tibetan Plateau (TP) on the summer rainfall anomaly in East China using the Weather Research and Forecasting model. Numerical experiments for 2003 indicate that a spring SH anomaly over the TP can maintain its impact until summer and lead to a strong atmospheric heat source, characterized both by the enhanced SH over the western TP and enhanced latent heat of condensation to the east. Wave activity diagnosis reveals that the enhanced TP heating forces a Rossby wave train over the downstream regions. A cyclonic response over the northeast TP brings about a low-level northerly anomaly over northern China, while an anticyclonic response over the western Pacific enhances the subtropical high and the low-level southerly on its western flank. As a result, cold and dry airflow from mid-high latitudes, and warm and wet airflow from tropical oceans converge around the Huaihe River basin. In addition, warm advection originating from the TP induces vigorous ascending motion over the convergence belt. Under these favorable circulation conditions the eastward-propagating vortexes initiated over the TP intensify the torrential rainfall processes over the Huaihe River basin. In contrast, additional experiments considering the year 2001 with weak spring SH over the TP and an overall southward retreat of the summer rainfall belt in East China further demonstrate the role of spring SH over the TP in regulating the interannual variability of EASM in terms of wave activity and synoptic disturbances.
引用
收藏
页码:2885 / 2898
页数:13
相关论文
共 172 条
[1]  
Ai X(2002)General circulation over the northern hemisphere in 2001 and its impact on the climate in China Meteor Mon 28 21-24
[2]  
Bougeault P(1989)Parameterization of orographic induced turbulence in a mesobeta scale model Mon Weather Rev 117 1872-1890
[3]  
Lacarrère P(2001)Coupling an advanced land-surface hydrology model with the Penn Statr-NCAR MM5 modeling system. Part I: model implementation and sensitivity Mon Weather Rev 129 569-585
[4]  
Chen F(2000)Studies on Relation of snow cover over the Tibetan Plateau in winter-summer monsoon change Chin J Atmos Sci 24 477-492
[5]  
Dudhia J(1999)A shortwave radiation parameterization for atmospheric studies NASA Tech Memo 15 40-67
[6]  
Chen QJ(2008)Time-lagged effects of spring Tibetan Plateau soil moisture on the monsoon over China in early summer Int J Climatol 28 55-2463
[7]  
Gao B(1981)Circulation of the West-Pacific jet stream Mon Weather Rev 109 2450-142
[8]  
Zhang Q(2005)The East Asian summer monsoon: an overview Meteorol Atmos Phys 89 117-807
[9]  
Chou MD(2005)Role of the Tibetan Plateau thermal forcing in the summer climate pattern over subtropical Asia Clim Dyn 24 793-257
[10]  
Suarez MJ(2005)Heating status of the Tibetan Plateau from April to June and rainfall and atmospheric circulation anomaly over East Asia in midsummer Sci China Ser D 48 250-5682