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首页> 外文期刊>Journal of the Atmospheric Sciences >On the initial development of asymmetric vertical motion and horizontal relative flow in a mature tropical cyclone embedded in environmental vertical shear
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On the initial development of asymmetric vertical motion and horizontal relative flow in a mature tropical cyclone embedded in environmental vertical shear

机译:埋藏在环境垂直剪切中的成熟热带气旋的不对称垂直运动和水平相对流动的初步发展

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In this paper, the authors focus on the initial development of asymmetric vertical motion and horizontal relative flow in a mature tropical cyclone (TC) embedded in an environmental vertical shear. The fully compressible, nonhydrostatic TC model was used to perform a series of numerical experiments with a mature TC with different intensities embedded in shear with different magnitudes and different vertical profiles. Results show that the development of both the wavenumber-1 asymmetric vertical motion and horizontal relative flow for a TC embedded in vertical shear is quite sensitive to both the magnitude and the vertical profile of wind shear, as well as the intensity of the TC itself. Diagnostic analysis based on the quasi-balanced potential vorticity inversion indicates that the balanced dynamics can only explain a small portion of the asymmetric vertical motion and relative flow. The unbalanced processes contribute predominantly to the development of the asymmetric flow in the simulations. It is shown that the eyewall of a mature TC plays a role somewhat like a material cylinder embedded in an environmental flow with vertical shear. The interaction between the environmental shear and the eyewall produces vertical gradient of convergence/divergence of horizontal wind around the lateral edge of the eyewall. This forces much stronger asymmetric vertical motion than the balanced processes do and drives significant horizontal relative divergent flow over the storm core, which opposes vertical shear and reduces the vertical tilt of the storm axis. In addition, the budget analysis for the axisymmetric tangential wind demonstrates that the asymmetric flow plays a dominant role in weakening the storm top down.
机译:在本文中,作者集中于嵌入环境垂直剪切中的成熟热带气旋(TC)中不对称垂直运动和水平相对流的初步发展。使用完全可压缩的非静力TC模型,以不同强度和不同垂直剖面的剪切力嵌入不同强度的成熟TC进行了一系列数值实验。结果表明,垂直剪切中埋藏的TC的波数为1的不对称垂直运动和水平相对流的发展对风切变的幅度和垂直剖面以及TC本身的强度都非常敏感。基于准平衡势涡反演的诊断分析表明,平衡动力学只能解释不对称垂直运动和相对流的一小部分。在模拟中,不平衡过程主要是造成不对称流动的原因。可以看出,成熟TC的眼墙起到的作用有点像嵌入垂直剪切力的环境流中的料筒。环境剪切力和眼墙之间的相互作用在眼墙的侧边缘周围产生水平风的收敛/发散的垂直梯度。与平衡过程相比,这迫使非对称垂直运动更加强烈,并在风暴核心上驱动了显着的水平相对发散流,从而阻止了垂直剪切并减小了风暴轴的垂直倾斜。此外,对轴对称切向风的预算分析表明,不对称流在减弱自上而下的风暴中起主导作用。

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