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首页> 外文期刊>Journal of Fluid Mechanics >STRUCTURE AND ENERGETICS OF OPTIMAL EKMAN LAYER PERTURBATIONS
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STRUCTURE AND ENERGETICS OF OPTIMAL EKMAN LAYER PERTURBATIONS

机译:最佳埃克曼层扰动的结构和能量学

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The optimal non-modal perturbations for the neutrally stratified boundary layer in a rotating frame of reference (Ekman layer) are found for a Reynolds number characteristic of the planetary boundary layer (PBL). Two classes of non-modal instabilities are found: evanescent perturbations, with lifetimes up to about one hour, and growing instabilities. The important difference between these types of perturbations is whether or not the optimal non-modal perturbation projects onto an unstable normal mode. The evanescent instabilities are of smaller scale and are oriented at larger angles to the surface isobars compared to either the growing perturbations or normal-mode instabilities. The optimal perturbations take the form of vortices at an acute angle to the geostrophic flow that rapidly transform into streaks with associated overturning motion. The energetics of the optimal perturbations are investigated in detail to clarify the instability mechanism throughout its evolution. Nonlinear stability analyses of the neutrally stratified Ekman layer have shown that the normal-mode instability will equilibrate with the mean flow to form boundary-layer-scale equilibrium roll eddies aligned closely with the geostrophic how. However, numerical simulations do not generate these rolls in neutral stratification although they often realize small-scale near-surface streaks oriented at large angles to the geostrophic wind. The evanescent optimal perturbations bear a close resemblance to the simulated streaks. It is proposed that the non-model perturbation mechanism is associated with the streaks. [References: 49]
机译:针对行星边界层(PBL)的雷诺数特征,找到了旋转参考框架(Ekman层)中中性分层边界层的最佳非模态扰动。发现了两类非模态不稳定性:渐逝性扰动(寿命长达一小时左右)和不稳定性增长。这些类型的摄动之间的重要区别是,最佳的非模态摄动是否会投射到不稳定的正常模式。与不断增加的扰动或正常模式不稳定性相比,逝不稳定性的规模较小,并且与表面等压线的取向较大。最佳扰动采取与地转流成锐角的涡旋形式,并随着相关的倾覆运动迅速转变为条纹。对最佳扰动的能量学进行了详细研究,以阐明其整个演化过程中的不稳定性机理。对中性分层的埃克曼层的非线性稳定性分析表明,正常模式的不稳定性将与平均流量相平衡,从而形成与地转方式紧密对准的边界层尺度的平衡涡旋。但是,尽管数值模拟通常会实现与地转风成大角度的小规模近地表条纹,但数值模拟并不会在中性分层中生成这些卷。 van逝的最佳摄动与模拟条纹非常相似。建议将非模型扰动机制与条纹相关联。 [参考:49]

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