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Impact of Vertical Wind Shear on Gravity Wave Propagation in the Land-Sea-Breeze Circulation at the Equator

机译:垂直风剪切对赤道陆海风循环中的重力波传播的影响

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摘要

The impact of vertical wind shear on the land-sea-breeze circulation at the equator is explored using idealized 2D numerical simulations and a simple 2D linear analytical model. Both the idealized and linear analytical models indicate Doppler shifting and attenuation effects coexist under the effect of vertical wind shear for the propagation of gravity waves that characterize the land-sea-breeze circulation. Without a background wind, the idealized sea breeze has two ray paths of gravity waves that extend outward and upward from the coast. A uniform background wind causes a tilting of the two ray paths due to Doppler shifting. With vertical shear in the background wind, the downstream ray path of wave propagation can be rapidly attenuated near a certain level, whereas the upstream ray path is not attenuated and the amplitudes even increase with height. The downstream attenuation level is found to descend with increasing linear wind shear. The present analytical model establishes that the attenuation level corresponds to the critical level where the background wind is equal to the horizontal gravity wave phase speed. The upstream gravity wave ray path can propagate upward without attenuation as there is no critical level there.
机译:探讨了使用理想化的2D数值模拟和简单的2D线性分析模型,探索了垂直风剪在赤道陆海风循环上的影响。理想化和线性分析模型都表示多普勒换档和衰减效果在垂直风剪切的效果下共存,以使重力波的传播,其表征陆海微风循环。在没有背景风的情况下,理想化的海风有两条重力波的光线,从海岸向外延伸。由于多普勒换档,均匀的背景风导致两条光线路径的倾斜。在背景风中垂直剪切,波传播的下游光线路径可以快速衰减在一定水平附近,而上游射线路径未衰减,并且幅度甚至随高度的增加。发现下游衰减水平随着线性风剪的增加而下降。本分析模型确定衰减水平对应于背景风等于水平重力波相速的临界水平。上游重力波射线路径可以在不衰减的情况下向上传播,因为那里没有临界水平。

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