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四川盆地一次暴雨过程中西南低涡非对称结构特征及其成因分析

Analysis on characteristics and causes of the Southwest Vortex asymmetric structure during one rainstorm in the Sichuan Basin

  • 摘要: 为深入认识诱发暴雨的西南低涡非对称结构特征,选取近10 a来影响最大、由西南低涡缓慢移动造成的四川盆地2013年6月30日暴雨过程,基于WRF数值模拟等资料,采用跟随低涡中心移动的动态合成方法,结合涡度方程、散度方程诊断及风场分解,对西南低涡成熟阶段的非对称结构特征与成因进行分析,结果表明:(1) 西南低涡在低空表现为旋转进入中心并逐渐减弱的辐合气流,高空为旋转的辐散气流。西南低涡的降雨、正涡度、低空辐合及垂直上升运动呈显著的非对称分布。低涡前侧正涡度和辐合上升运动显著,降雨强;低涡后侧正负涡度并存,辐合上升运动较弱,降雨弱。(2) 西南低涡的非对称分布与低涡前侧的副热带高压作用有关。副热带高压维持,有利于向东南方向移动的西南低涡前侧位势高度梯度增加和低空急流增强,导致低涡前侧位势高度的拉普拉斯项和动能的拉普拉斯项呈负值演变,形成持续的低空负值非平衡动力强迫效应,促进低空辐合和垂直上升运动增长,以及强降雨发展,并通过低空辐合和垂直上升运动促进低涡前侧正涡度发展,形成西南低涡降雨、正涡度、低空辐合及垂直上升运动的非对称分布特征。

     

    Abstract: To gain an in-depth understanding of the asymmetric structure of the Southwest Vortex producing rainstorms, the rainstorm process in the Sichuan Basin on 30 June 2013 was investigated in this study. This rainstorm was caused by the slowly moving Southwest Vortex, and had the most significant impact in the past decade. Based on WRF numerical simulation and other data, the asymmetric structure characteristics and causes in the mature stage of the Southwest Vortex rainstorm were analyzed by using a dynamic composite method that followed the vortex center, combined with vorticity equation diagnosis, divergence equation diagnosis, and wind field decomposition. The results are as follows. (1) The Southwest Vortex exhibited convergent airflows which rotated into the center and gradually weakened at low altitudes, while divergent airflows rotated at high altitudes. The precipitation, positive vorticity, low-level convergence, and vertical ascending motion of the Southwest Vortex exhibited significant asymmetric distribution characteristics. The front side of the vortex exhibited significant positive vorticity, and prominent convergence ascending motion, leading to heavy rainfall. While on the rear side of the vortex, the positive and negative vorticity coexisted, with weaker convergence and ascending motion, accompanied by weaker rainfall. (2) The asymmetric distribution of the Southwest Vortex was related to the impact of subtropical high in front of the vortex. The maintenance of subtropical high favors the formation of the asymmetric structure of the Southwest Vortex, which was conducive to the formation of the gradually increasing potential height gradient and the enhancement of the low-level jet in front of the southeastward vortex. The spatial distribution led to negative evolutions of the Laplace term of potential height and the Laplace term of kinetic energy, which produced a sustained low-level negative non-equilibrium dynamic forcing effect. Then the negative non-equilibrium dynamic forcing promoted the development of low-level convergence, and vertical ascending motion, and led to heavy rainfall. In addition, the positive vorticity was generated through low-level convergence and vertical ascending motion in front of the vortex, forming asymmetric distribution characteristics of rainfall, positive vorticity, low-level convergence, and vertical ascending motion associated with the Southwest Vortex.

     

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