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Features of the Supersonic Gravity Wave Penetration from the Earth's Surface to the Upper Atmosphere

机译:超音速重力波渗透到地球表面到高层大气层

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Using a high-resolution numerical model, we simulate the gravity wave (GW) modes having supersonic horizontal phase velocities on the Earth's surface and propagating to the upper atmosphere. Such GWs can be produced, for example, by low-frequency spectral components of the seismic waves propagating over the Earth's crust surface with horizontal velocities of up to a few kilometers per second. According to the linear theory, GW modes with so high horizontal velocities should be trapped, with their amplitudes exponentially decreasing with the altitude. Numerical experiments with a nonlinear wave model showed that the initial acoustic-gravity wave pulse occurring when a non-stationary ground wave source is switched on can create a system of relatively slow moving mesoscale irregularities at altitudes from the Earth's surface to the upper atmosphere. The trapped GW modes excited by a supersonic surface source may feed this system of irregularities with energy and ensure its existence within time intervals of up to tens of wave periods. The irregularities can form undulatory inclined wave fronts, similar to effective upward propagating GWs. Thus, the supersonic trapped modes excited on the Earth's surface can create atmospheric internal GWs having subsonic horizontal phase velocities and spreading to high altitudes.
机译:使用高分辨率数值模型,我们模拟了地球表面上具有超音速水平相速度并传播到高层大气层的重力波(GW)模式。例如,这种GW可以由例如在地壳表面上传播的地壳波的低频光谱分量,每秒高达几公里的水平速度。根据线性理论,具有如此高的水平速度的GW模式应被捕获,其幅度与高度指数逐渐减小。具有非线性波模型的数值实验表明,当非固定接地波源接通时发生的初始声学 - 重力波脉冲可以在从地球表面到高层大气中的高度下的相对缓慢移动的Mesoscale不规则性系统。由超声表面源激发的被捕获的GW模式可以通过能量馈送该系统的不规则性,并确保其在高达几十波段的时间间隔内存在。不规则性可以形成波纹倾斜波前沿,类似于有效向上传播的GWS。因此,在地球表面上兴奋的超音速捕获模式可以产生具有亚音水平阶段速度并扩散到高海拔的大气内部GW。

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