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A Spectral Parameterization of Mean-Flow Forcing due to Breaking Gravity Waves

机译:打破重力波引起的均流强迫的谱参数化

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A spectral parameterization of mean-flow forcing due to breaking gravity waves is described for application in the equations of motion in atmospheric models. The parameterization is based on linear theory and adheres closely to fundamental principles of conservation of wave action flux, linear stability, and wave-mean-flow interaction. Because the details of wave breakdown and nonlinear interactions are known to be very complex and are still poorly understood, only the simplest possible assumption is made: that the momentum fluxes carried by the waves are deposited locally and entirely at the altitude of linear wave breaking. This simple assumption allows a straightforward mapping of the momentum flux spectrum, input at a specified source altitude, into vertical profiles of mean-flow force. A coefficient of eddy diffusion can also be estimated. The parameterization can be used with any desired input spectrum of momentum flux. The results are sensitive to the details of this spectrum and also realistically sensitive to the background vertical shear and stability profiles. These sensitivities make the parameterization ideally suited for studying both the effects of gravity waves from unique sources like topography and convection as well as generalized broad input spectra. Existing constraints on input parameters are also summarized from the available observations. With these constraints, the parameterization generates realistic variations in gravity-wave-driven, mean-flow forcing.
机译:描述了由于破坏重力波而引起的平均流强迫的频谱参数化,将其应用于大气模型中的运动方程。参数化基于线性理论,并严格遵守波动动量守恒,线性稳定性和波均流相互作用的基本原理。因为已知波分解和非线性相互作用的细节非常复杂,并且仍然了解不多,所以只能做出最简单的假设:由波携带的动量通量局部且完全沉积在线性波破裂的高度。这个简单的假设可以将在指定源高度输入的动量通量谱直接映射到平均流力的垂直剖面中。涡流扩散系数也可以估算。参数化可以与动量通量的任何所需输入谱一起使用。结果对这个光谱的细节敏感,对背景垂直剪切和稳定性剖面也很敏感。这些灵敏度使参数化非常适合研究来自地形和对流等独特来源的重力波的影响,以及广义的宽输入光谱。输入参数的现有约束条件也从现有观察中总结出来。在这些约束条件下,参数化在重力波驱动的平均流强迫中产生了现实的变化。

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