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Vorticity Budget Investigation of a Simulated Long-Lived Mesoscale Vortex in South China

机译:中国南方中长期模拟中尺度涡旋的涡度预算研究

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A vorticity budget investigation is performed using the output data from a numerical simulation of a typical MCV (mesoscale convectively generated votex) case in South China. Results suggest that the divergence caused by convection in the low troposphere is the main producer of positive vorticity, while vertical vorticity transferred by the tilting term from the horizontal vorticity compensates the upward output of cyclonic vorticity. Scale analyses of the vorticity equation suggest that the advection of planetary vorticity can be neglected owing to the low latitude, which is different from the larger scale systems in high latitude areas. In addition, the distribution of relative vorticity tendency on pressure level is not uniform. A vortex will move along the vector from the negative to the positive vorticity tendency region. The mechanism of the phenomenon-that nearly all of the convectively ascending region is located southward/southeastward of the vortex center-is also discussed. Convergence with regard to latent heat release would be in favor of the spin-up of meso-vortex, however, the horizontal vorticity caused by wind shear is tilted by vertical motion due to convection. Consequently, the negative and positive vorticity tendencies are located symmetrically about the convective center, which suggests that the vortex southward movement is dynamically driven by convection.
机译:使用华南地区典型的MCV(对流生成的中尺度票数)案例的数值模拟得出的输出数据,进行涡度预算调查。结果表明,低对流层中对流引起的散度是正涡旋的主要产生者,而倾斜项从水平涡旋转移的垂直涡旋补偿了旋风涡旋的向上输出。涡度方程的尺度分析表明,由于低纬度,行星涡度的对流可以忽略,这与高纬度地区的较大尺度系统不同。另外,相对涡度趋势在压力水平上的分布不均匀。涡旋将沿着向量从负涡旋趋势区域向正涡旋趋势区域移动。还讨论了这种现象的机理-几乎所有对流上升区都位于涡旋中心的南/东南。关于潜热释放的收敛将有利于中旋涡的旋转,但是,由于对流,由风切变引起的水平旋涡由于垂直运动而倾斜。因此,负涡旋趋势和正涡旋趋势围绕对流中心对称分布,这表明涡旋向南运动是由对流动态驱动的。

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