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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Numerical Simulations of High-Frequency GravityWave Propagation Through Fine Structures in the Mesosphere
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Numerical Simulations of High-Frequency GravityWave Propagation Through Fine Structures in the Mesosphere

机译:介质晶体细结构高频重力波传播的数值模拟

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摘要

An anelastic numerical model is used to study the influences of fine structure (FS) in the wind and stability profiles on gravity wave (GW) propagation in the Mesosphere and Lower Thermosphere (MLT). Large amplitude GWs interacting with FS, that is, thin regions of enhanced wind and stability, evolve very differently depending on the precise vorticity source and sink terms for small-scale motions induced by the FS gradients. The resulting small-scale dynamics are deterministic, promoting local instabilities, dissipation, and momentum deposition at locations and orientations determined by the initial FS. The resulting momentum depositions yield significant changes to the background wind structure, having scales and amplitudes comparable to the effects of large-scale features in the ambient atmosphere. The deterministic nature of the large-scale impacts further suggests that they can be estimated without fully resolving the underlying instability dynamics. Given the significant amplitudes and ubiquitous occurrence of FS throughout the atmosphere, the influences of these important and diverse flow evolutions merit inclusion in broader modeling efforts.
机译:Anelastic数值模型用于研究微结构(FS)在介质层层和下热层(MLT)中的重力波(GW)繁殖中的风力和稳定性谱的影响。与FS相互作用的大幅度GW,即,增强风和稳定性的薄区域,取决于由FS梯度引起的精确涡流源和水槽术语的精确涡度源和下沉术语非常不同。由此产生的小规模动态是确定性的,促进局部不稳定性,耗散和动量沉积在初始FS确定的位置和方向上。由此产生的动量沉积产生了对背景风结构的显着变化,具有与环境气氛中大规模特征的影响相当的尺度和幅度。大规模影响的确定性性质进一步表明它们可以估计,而无需完全解决潜在的不稳定动态。鉴于整个大气中的FS显着幅度和普遍存在的发生,这些重要和多样化的流动演变的影响值得纳入更广泛的建模努力。

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