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An analytical model of mountain wave drag for wind profiles with shear and curvature

机译:具有剪切和曲率的风廓线的山波阻力解析模型

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摘要

An analytical model is developed to predict the surface drag exerted by internal gravity waves on an isolated axisymmetric mountain over which there is a stratified flow with a velocity profile that varies relatively slowly with height. The model is linear with respect to the perturbations induced by the mountain, and solves the Taylor - Goldstein equation with variable coefficients using a Wentzel - Kramers - Brillouin (WKB) approximation, formally valid for high Richardson numbers, Ri. The WKB solution is extended to a higher order than in previous studies, enabling a rigorous treatment of the effects of shear and curvature of the wind profile on the surface drag. In the hydrostatic approximation, closed formulas for the drag are derived for generic wind profiles, where the relative magnitude of the corrections to the leading-order drag ( valid for a constant wind profile) does not depend on the detailed shape of the orography. The drag is found to vary proportionally to Ri(-1), decreasing as Ri decreases for a wind that varies linearly with height, and increasing as Ri decreases for a wind that rotates with height maintaining its magnitude. In these two cases the surface drag is predicted to be aligned with the surface wind. When one of the wind components varies linearly with height and the other is constant, the surface drag is misaligned with the surface wind, especially for relatively small Ri. All these results are shown to be in fairly good agreement with numerical simulations of mesoscale nonhydrostatic models, for high and even moderate values of Ri.
机译:建立了一个分析模型来预测内部重力波施加在孤立的轴对称山脉上的表面阻力,在该山脉上有分层流,其速度剖面随高度变化相对较慢。该模型相对于山峰引起的扰动是线性的,并使用Wentzel-Kramers-Brillouin(WKB)近似求解具有可变系数的Taylor-Goldstein方程,对高Richardson数Ri有效。 WKB解决方案的扩展范围比以前的研究更高,从而可以严格处理风廓线的剪切和曲率对表面阻力的影响。在静水力近似中,针对通用风廓线推导了阻力的封闭公式,其中对主导阻力的校正的相对大小(对于恒定风廓线有效)不取决于地形的详细形状。发现阻力与Ri(-1)成比例变化,对于随高度线性变化的风,阻力随着Ri的减小而减小,对于随高度保持其大小旋转的风,阻力随着Ri的减小而增大。在这两种情况下,预计表面阻力将与表面风对齐。当一个风分量随高度线性变化而另一个恒定时,表面阻力与表面风不一致,尤其是对于相对较小的Ri而言。对于Ri的高甚至中等值,所有这些结果都表明与中尺度非静水模型的数值模拟非常吻合。

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