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Prevalence of tornado-scale vortices in the tropical cyclone eyewall

机译:热带气旋眼墙中龙卷风尺度漩涡的流行

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摘要

Analyses of datasets from manned research flights that penetrated hurricane eyes and tropical cyclone (TC) damage surveys strongly suggest the existence of tornado-scale vortices in the turbulent boundary layer of the TC eyewall. However, their small horizontal scale, their fast movement, and the associated severe turbulence make the tornado-scale vortex very difficult to observe directly. To understand tornado-scale vortices in the TC eyewall and their influence on the TC vortex, mesoscale rainbands, and convective clouds, a numerical experiment including seven nested domains with the smallest horizontal grid interval of 37 m is conducted to perform a large eddy simulation (LES) with the Advanced Weather Research and Forecast (WRF) model. We show that most of the observed features associated with tornado-scale vortices can be realistically simulated in the WRF-LES framework. The numerical simulation confirms the existence of simulated tornado-scale vortices in the turbulent boundary layer of the TC eyewall. Our numerical experiment suggests that tornado-scale vortices are prevalent at the inner edge of the intense eyewall convection.
机译:来自载人研究飞行的数据集的分析穿透了飓风眼和热带气旋(TC)损害调查,强烈表明在TC眼壁的湍流边界层中存在龙卷风级涡旋。然而,它们较小的水平尺度,它们的快速运动以及相关的剧烈湍流使龙卷风尺度的涡旋很难直接观察到。为了了解TC眼壁中的龙卷风尺度旋涡及其对TC旋涡,中尺度雨带和对流云的影响,进行了一个数值实验,包括七个嵌套网格,最小水平网格间隔为37 m,以进行大涡模拟( LES)和高级天气研究与预报(WRF)模型。我们显示,大多数与龙卷风尺度涡旋相关的观测特征都可以在WRF-LES框架中进行实际模拟。数值模拟证实了在TC眼壁的湍流边界层中存在模拟的龙卷风尺度旋涡。我们的数值实验表明,在强烈的眼壁对流内缘,龙卷风尺度的旋涡普遍存在。

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