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Nonlinear interactions between gravity waves and tides

机译:重力波与潮汐之间的非线性相互作用

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In this study, we present the nonlinear interactions between gravity waves (GWs) and tides by using the 2D numerical model for the nonlinear propagation of GWs in the compressible atmosphere. During the propagation in the tidal background, GWs become instable in three regions, that is z= 75—85 km, z = 90—110 km and z = 115—130 km. The vertical wavelength firstly varies gradually from the initial 12 km to 27 km. Then the newly generated longer waves are gradually compressed. The longer and shorter waves occur in the regions where GWs propagate in the reverse and the same direction of the horizontal mean wind respectively. In addition, GWs can propagate above the main breaking region (90—110 km). During GWs propagation, not only the mean wind is accelerated, but also the amplitude of tide is amplified. Especially, after GWs become instable, this amplified effect to the tidal amplitude is much obvious.
机译:在这项研究中,我们通过使用二维数值模型来描述重力在可压缩大气中的非线性传播,从而介绍了重力波(GWs)与潮汐之间的非线性相互作用。在潮汐背景下传播期间,GWs在三个区域变得不稳定,即z = 75-85 km,z = 90-110 km和z = 115-130 km。垂直波长首先从最初的12 km逐渐变化到27 km。然后,新产生的更长的波被逐渐压缩。长波和短波分别出现在GWs分别沿水平平均风的反向和相同方向传播的区域。此外,GW可以在主要断裂区域(90-110 km)上方传播。在GWs传播过程中,不仅平均风加速了,潮汐的振幅也放大了。特别是,GWs变得不稳定之后,这种对潮汐振幅的放大作用就非常明显。

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