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Numerical Simulation of the Global Neutral Wind System of the Earth’s Middle Atmosphere for Different Seasons

机译:不同季节地球中层大气全球中性风系统的数值模拟

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A non-hydrostatic model of the global neutral wind system of the Earth’s atmosphere, developed earlier, is utilized to simulate the large-scale global circulation of the middle atmosphere for conditions of different seasons. In the model calculations, not only the horizontal components, but also the vertical component of the neutral wind velocity, are obtained by means of a numerical solution of a generalized Navier-Stokes equation for compressible gas, so the hydrostatic equation is not applied. Moreover, the global temperature field is assumed to be a given distribution, (i.e., the input parameter of the model) and obtained from one of the existing empirical models. The results of simulation indicate that the horizontal non-uniformity of the neutral gas temperature, which is distinct in different seasons, ought to considerably influence the formation of the global neutral wind system in the middle atmosphere, in particular, the large-scale circumpolar vortices of the northern and southern hemispheres.
机译:较早建立的地球大气的全球中性风系统的非静力学模型,用于模拟不同季节条件下中间大气的大规模全球环流。在模型计算中,通过可压缩气体的广义Navier-Stokes方程的数值解,不仅获得了中性风速的水平分量,而且还获得了中性风速的垂直分量,因此不应用流体静力方程。而且,假定全局温度场是给定的分布(即,模型的输入参数),并且是从现有的经验模型之一获得的。仿真结果表明,不同季节不同的中性气体温度水平不均匀性,应该对中层大气特别是大规模的绕极涡旋在全球形成的中性风系统的形成有很大影响。南北半球。

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