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首页> 外文期刊>Journal of the Atmospheric Sciences >Understanding Instabilities of Tropical Cyclones and Their Evolution with a Moist Convective Rotating Shallow-Water Model
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Understanding Instabilities of Tropical Cyclones and Their Evolution with a Moist Convective Rotating Shallow-Water Model

机译:了解热带旋风的稳定性及其潮湿对流旋转浅水模型的演变

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摘要

Instabilities of hurricane-like vortices are studied with the help of a rotating shallow-water model, including the effects of moist convection. Linear stability analysis demonstrates that dominant unstable modes are mixed Rossby-inertia-gravity waves. It is shown that, depending on fine details of the vorticity profile, a wavenumber selection of the instability may operate or not, leading in some cases to an unstable mode with a distinctively maximal growth rate and in other cases to an ensemble of unstable modes with close growth rates. Numerical simulations are performed in order to investigate nonlinear saturation of the instability and to understand the dynamical role of moisture. In agreement with previous studies, the authors confirm axisymmetrization of vorticity in the course of the development of the instability, which induces changes of intensity of the hurricane. In "dry" simulations, winds are intensified only inside the radius of maximum wind, while the maximum value of the wind decreases. "Moist precipitating" simulations (with and without evaporation) exhibit a net increase of winds, also at the radius of maximum wind, as compared to the dry simulations. Dynamical effects of moisture on the reorganization of the vortex and on the efficiency of inertiagravity wave emission are quantified and shown to be considerable. Periodic bursts in the emission of waves related to the development of the unstable modes inside the vortex are evidenced, as well as the appearance of convectively coupled waves in the moist precipitating simulations with evaporation.
机译:旋转浅水模型的帮助,研究了飓风样涡流的稳定性,包括潮湿对流的影响。线性稳定性分析表明,显性不稳定模式混合罗斯比惯性 - 重力波。结果表明,取决于涡流分布的细节,稳定性的波数可以在某些情况下以不稳定的模式引进,以具有明显的最大生长速率,并且在其他情况下与不稳定模式的集合关闭增长率。进行数值模拟以研究不稳定性的非线性饱和度并理解水分的动态作用。在与之前的研究方面,作者在不稳定的发展过程中确认了涡旋的轴对称化,这会诱导飓风强度的变化。在“干燥”模拟中,风仅在最大风的半径内加剧,而风的最大值降低。与干燥模拟相比,“湿润沉淀”模拟(有且不蒸发)呈净增加风,最大风的半径。水分对涡流重组的动力学效应和惯性波发射效率的量化并显示为相当大。已经证明了与涡旋内部不稳定模式的发射有关的波浪中的周期性突发,以及蒸发潮湿沉淀模拟中的对比耦合波的外观。

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