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The physics of orographic gravity wave drag

机译:地形重力波拖曳的物理学

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The drag and momentum fluxes produced by gravity waves generated in flow over orography are reviewed, focusing on adiabatic conditions without phase transitions or radiation effects, and steady mean incoming flow. The orographic gravity wave drag is first introduced in its simplest possible form, for inviscid, linearized, non-rotating flow with the Boussinesq and hydrostatic approximations, and constant wind and static stability. Subsequently, the contributions made by previous authors (primarily using theory and numerical simulations) to elucidate how the drag is affected by additional physical processes are surveyed. These include the effect of orography anisotropy, vertical wind shear, total and partial critical levels, vertical wave reflection and resonance, non-hydrostatic effects and trapped lee waves, rotation and nonlinearity. Frictional and boundary layer effects are also briefly mentioned. A better understanding of all of these aspects is important for guiding the improvement of drag parametrization schemes.
机译:回顾了地形地形流中产生的重力波产生的阻力和动量通量,重点研究了绝热条件,没有相变或辐射效应,没有稳定的平均输入流。地形重力波阻力首先以其最简单的形式引入,用于具有Boussinesq和流体静力学近似的不粘,线性化,非旋转流,以及恒定的风和静稳定性。随后,调查了先前作者(主要使用理论和数值模拟)为阐明阻力如何受其他物理过程影响而做出的贡献。这些因素包括地形各向异性,垂直风切变,总和部分临界水平,垂直波反射和共振,非静水效应和被困的风波,旋转和非线性的影响。还简要提到了摩擦和边界层效应。更好地理解所有这些方面对于指导改进阻力参数化方案很重要。

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