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首页> 外文期刊>Izvestiya Atmospheric and Oceanic Physics >Numerical Modeling of the Propagation of Nonlinear Acoustic-Gravity Waves in the Middle and Upper Atmosphere
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Numerical Modeling of the Propagation of Nonlinear Acoustic-Gravity Waves in the Middle and Upper Atmosphere

机译:非线性声重力波在中高层大气中传播的数值模拟

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摘要

A numerical algorithm for modeling the vertical propagation and breaking of nonlinear acoustic-gravity waves (AGWs) from the Earth's surface to the upper atmosphere is described in brief. Monochromatic variations in the vertical velocity at the Earth's surface are used as an AGW source in the model. The algorithm for solving atmospheric hydrodynamic equations is based on three-dimensional finite-difference analogues of fundamental conservation laws. This approach selects physically correct generalized solutions to hydrodynamic equations. A numerical simulation is carried out in an altitude region from the Earth's surface to 500 km. Vertical profiles of the background temperature, density, and coefficients of molecular viscosity and heat conduction are taken from the standard atmosphere models. Calculations are made for different amplitudes of lower-boundary wave forcing. The AGW amplitudes increase with altitude, and waves may break in the middle and upper atmosphere.
机译:简要描述了一种用于模拟非线性声重力波(AGW)从地球表面到高层大气的垂直传播和破坏的数值算法。地球表面垂直速度的单色变化被用作模型中的AGW源。求解大气水动力方程的算法基于基本守恒定律的三维有限差分类似物。这种方法为流体动力学方程选择了物理上正确的广义解。在从地球表面到500 km的高空区域进行了数值模拟。背景温度,密度以及分子粘度和热传导系数的垂直分布图取自标准大气模型。针对下边界波强迫的不同幅度进行计算。 AGW振幅随高度增加,并且在中层和高层大气中可能会破裂。

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