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Diagnostic analysis of mesoscale rainstorms in the Jiang-Huai valley of China with convective vorticity vector

机译:利用对流涡度向量对中国江淮流域中尺度暴雨的诊断分析

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摘要

By the vector product of absolute vorticity vectors and equivalent potential temperature gradients, a new vector, convective vorticity vector (CVV) is readdressed after Gao et al., and is applied to the study of the development and movement of mesoscale rainstorms in the Jiang-Huai valley of China by using high-resolution simulation data with PSU/NCAR MM5 briefly. The results show that the CVV, especially its vertical component which is closely related to interactions between vertical secondary circulations and horizontal equivalent potential temperature gradients, may be a good tracer and diagnostic tool in the study of mesoscale rainstorms in the Jiang-Huai valley of China. And the main physical processes responsible for the variations of the vertical component of the CVV are discussed briefly based on its tendency equation proposed in this article.
机译:利用绝对涡度矢量和等效势能温度梯度的矢量积,对新的对流涡度矢量(CVV)进行了高(Gao)等人的研究,并将其用于研究江南中尺度暴雨的发展和运动。简要地使用PSU / NCAR MM5的高分辨率模拟数据对中国淮河谷进行了研究。结果表明,CVV,特别是其垂直分量,与垂直二次循环和水平当量温度梯度之间的相互作用密切相关,可能是研究江淮中尺度暴雨的良好示踪剂和诊断工具。 。根据本文提出的趋势方程,简要讨论了引起CVV垂直分量变化的主要物理过程。

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