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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

机译:青藏高原春季显热对中国东部夏季降水异常的时滞影响:以WRF模型为例

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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.
机译:本研究利用天气研究和预报模型探索了青藏高原上的春季显热源对中国东部夏季降水异常的时滞影响。 2003年的数值实验表明,TP上的春季SH异常可以一直保持到夏季,并导致强大的大气热源,其特征是西部TP上的SH增强和东部凝结的潜热增强。波浪活动诊断表明,TP加热的增强会在下游区域上施加Rossby波浪。东北太平洋上空的气旋响应使中国北部出现低水平的北风异常,而西太平洋上空的反气旋响应则增强了副热带高压,并在其西侧向南增强了低水平。结果,中高纬度的干冷气流,热带海洋的湿湿气流在淮河流域周围汇聚。此外,源自TP的热对流会在会聚带上引起剧烈的上升运动。在这些有利的环流条件下,TP上向东传播的涡旋加剧了淮河流域的暴雨过程。相反,考虑到2001年TP春季SH弱且华东地区夏季降水带整体向南退缩的其他实验,进一步证明了TP春季SH在调节EASM的年际波动方面的作用。活动和天气干扰。

著录项

  • 来源
    《Climate dynamics》 |2014年第12期|2885-2898|共14页
  • 作者单位

    State Key Laboratory of Numerical Modelling for Atmospheric Sciences and Geophysical Fluid Dynamics (LASG), Institute of Atmospheric Physics (IAP), Chinese Academy of Sciences (CAS), P. O. Box 9804, Beijing 100029, China,University of Chinese Academy of Sciences, Beijing 100049, China;

    State Key Laboratory of Numerical Modelling for Atmospheric Sciences and Geophysical Fluid Dynamics (LASG), Institute of Atmospheric Physics (IAP), Chinese Academy of Sciences (CAS), P. O. Box 9804, Beijing 100029, China;

    State Key Laboratory of Numerical Modelling for Atmospheric Sciences and Geophysical Fluid Dynamics (LASG), Institute of Atmospheric Physics (IAP), Chinese Academy of Sciences (CAS), P. O. Box 9804, Beijing 100029, China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Spring sensible heat (SH); Tibetan Plateau (TP); East Asian summer monsoon (EASM); Summer rainfall;

    机译:春季显热(SH);青藏高原(TP);东亚夏季风(EASM);夏季降雨;
  • 入库时间 2022-08-18 03:32:12

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