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A Spectral Parameterization of Drag, Eddy Diffusion, and Wave Heating for a Three-Dimensional Flow Induced by Breaking Gravity Waves

机译:重力波破碎引起的三维流动的阻力,涡流扩散和波加热的光谱参数化

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There are three distinct processes by which upward-propagating gravity waves influence the large-scale dynamics and energetics of the middle atmosphere: (i) nonlocalized transport of momentum through wave propagation in three dimensions that remotely redistributes atmospheric momentum in both zonal and meridional directions from wave generation to wave dissipation regions; (ii) localized diffusive transport of momentum, heat, and tracers due to mixing induced by wave breaking; and (iii) localized transport of heat by perturbing wave structures due to dissipation that redistributes the thermal energy within a finite domain. These effects become most significant for breaking waves when momentum drag, eddy diffusion, and wave heating— the ‘‘breaking trinity’’—are all imposed on the background state. This paper develops a 3D parameterization scheme that self-consistently includes the breaking trinity in large-scale numerical models. The 3D parameterization scheme is developed based on the general relationship between the wave action flux and the subgrid-scale momentum and heat fluxes developed by Zhu in 1987 and a mapping approximation between the wave source spectrum and momentum deposition distribution developed by Alexander and Dunkerton in 1999. For a set of given input wind and temperature profiles at each model grid, the parameterization scheme outputs the vertical profiles of the subgrid-scale force terms together with the eddy diffusion coefficients in the momentum and energy equations for a 3D background flow.
机译:向上传播的重力波通过三种不同的过程影响中层大气的大规模动力学和能量:(i)通过波传播在三个维度上进行的非局部动量传输,可从纬向和纬向两个方向远程重新分配大气动量。波产生到波消散区域; (ii)由于破波引起的混合,动量,热量和示踪剂的局部扩散传播; (iii)由于耗散而扰动波浪结构,从而在有限域内重新分配热能,从而局部传导热量。当动量拖曳,涡流扩散和波浪加热(“三位一体”)都施加于背景状态时,这些影响对于打破波浪最为重要。本文开发了一种3D参数化方案,该方案在大型数值模型中始终包含断裂三位一体。 3D参数化方案是基于1987年Zhu提出的波浪作用通量与子网格尺度动量和热通量之间的一般关系以及Alexander和Dunkerton于1999年提出的波源谱与动量沉积分布之间的映射近似关系而开发的对于每个模型网格上一组给定的输入风和温度曲线,参数化方案将输出子网格规模力项的垂直曲线以及3D背景流的动量和能量方程中的涡流扩散系数。

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