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首页> 外文期刊>Journal of the Atmospheric Sciences >Large-Eddy simulation of roll vortices in a hurricane boundary layer
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Large-Eddy simulation of roll vortices in a hurricane boundary layer

机译:飓风边界层中涡旋的大涡模拟

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For the last decade, horizontal roll vortices have been often observed in hurricane boundary layers (HBLs). In this study, a large-eddy simulation is performed to explore the formation mechanism of the horizontal roll vortices and their significance in a near-neutrally stratified HBL at 40 km (R40) and 100 km (R100) from the center of the hurricane. Results are examined through turbulence statistics and empirical orthogonal function(EOF) analysis. The EOF analysis and budgets of turbulent kinetic energy demonstrate that an inflectionpoint instability in the radial velocity profile is responsible for the roll vortices with horizontal wavelengths of 1.5-2.4 km in the HBL both for R40 and R100. The roll vortices for R40 are nearly aligned with the gradient wind, while those for R100 are oriented slightly to the left of that wind. Also the horizontal distributions of velocity fluctuations suggest the presence of streaklike structures at horizontal intervals of several hundred meters near the ground surface. Internal gravity waves, Kelvin-Helmholtz waves, and entrainments occur above the HBL and are partly coupledwith the roll vortices in the HBL, implying an enhancement of vertical transports of momentum and other quantities between the HBL and the free atmosphere.
机译:在过去的十年中,经常在飓风边界层(HBL)中观察到水平涡旋。在这项研究中,进行了大涡模拟,以探讨水平滚动涡旋的形成机理及其在距飓风中心40 km(R40)和100 km(R100)处近中性分层的HBL中的意义。通过湍流统计和经验正交函数(EOF)分析检查结果。 EOF分析和湍动能预算表明,径向速度曲线中的拐点不稳定性是R40和R100在HBL中水平波长为1.5-2.4 km的滚动涡旋的原因。 R40的涡旋几乎与梯度风对齐,而R100的涡旋则略微指向该风的左侧。速度波动的水平分布也表明在地面附近几百米的水平间隔处存在条纹状结构。内部引力波,Kelvin-Helmholtz波和夹带出现在HBL上方,并且部分地与HBL中的侧倾涡旋耦合,这意味着HBL与自由大气层之间的动量和其他量的垂直传输增强。

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