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Intraseasonal variations of the Yangtze rainfall and its related atmospheric circulation features during the 1991 summer

机译:1991年夏季长江降水的季节内变化及其相关的大气环流特征

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摘要

The intraseasonal variations of the Yangtze rainfall over eastern China and its related atmospheric circulation characteristics during the 1991 summer are examined based on the gauge-observed rainfall and the NCEP/NCAR reanalysis data. Wavelet analysis shows that during the 1991 summer, the active and break sequences of rainfall over the middle and lower Yangtze Basin are mainly regulated by an oscillatory mode with a period of 15-35 days. An investigation of the circulation features suggests that the 15-35-day oscillation is associated with an anomalous low-level cyclone (anticyclone) appearing alternatively over the northern South China Sea (SCS) and the Philippine Sea, and related to a northeastward (southwestward) shift of the western Pacific subtropical anticyclone over the SCS, leading to a lower tropospheric divergence (convergence) over the Yangtze Basin. In the upper troposphere, the 15-35-day oscillation exhibits a dipole anomaly characterized by an anomalous cyclone (anticyclone) over eastern China and an anomalous anticyclone (cyclone) over the northern Tibetan Plateau, resulting in a southwestward shrinking (northeastward extending) of the South Asian anticyclone, and forming a convergence (divergence) over eastern China. Such a coupled anomalous flow pattern between the lower and upper troposphere favors large-scale descending (ascending) motion, and hence reduced (enhanced) rainfall over the Yangtze Basin. Dynamically, the intraseasonal variations in the Yangtze rainfall are mainly determined by the coupling between the low-level relative vorticity and the upper-level divergence. In the middle troposphere, the 15-35-day oscillation of the subtropical high is originated over the central North Pacific north of Hawaii, then propagates westward to the SCS-Philippine Sea, and finally modulates the intraseasonal variations of the Yangtze rainfall.
机译:根据实测观测到的降水量和NCEP / NCAR再分析资料,研究了1991年夏季长江中东部地区降水的季节内变化及其相关的大气环流特征。小波分析表明,1991年夏季,长江中下游地区降水的活动和中断顺序主要受15-35天的振荡模式调节。对环流特征的调查表明,15-35天的振荡与异常的低空旋风(反气旋)有关,后者交替出现在南海北部(SCS)和菲律宾海,并且与东北偏东(西南偏西)有关。 )西太平洋副热带反气旋在南海的移动,导致长江流域对流层的低散度(收敛)。在对流层上部15-35天的振荡表现为偶极子异常,其特征是中国东部上空异常的气旋(反气旋)和青藏高原北部上空的反气旋(旋风),导致了西南向收缩(向北延伸)。南亚反气旋,并在中国东部形成收敛(分歧)。上下对流层之间这种耦合的异常流型有利于大范围的下降(上升)运动,因此有利于长江流域降水的减少(增强)。在动力学上,长江降水的季节内变化主要由低水平相对涡度和高水平散度之间的耦合决定。在对流中层,副热带高压的15-35天振荡起源于夏威夷以北的北太平洋中部,然后向西传播到南海菲律宾海,最终调节了长江降水的季节内变化。

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  • 来源
    《Climate dynamics》 |2006年第8期|p.815-830|共16页
  • 作者

    Jiangyu Mao; Guoxiong Wu;

  • 作者单位

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

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);
  • 关键词

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