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Explicit invariant solutions associated with nonlinear atmospheric flows in a thin rotating spherical shell with and without west-to-east jets perturbations

机译:具有和不具有东西向射流扰动的薄旋转球壳中与非线性大气流相关的显式不变解

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摘要

A class of non-stationary exact solutions of two-dimensional nonlinear Navier-Stokes (NS) equations within a thin rotating spherical shell were found as invariant and approximately invariant solutions. The model is used to describe a simple zonally averaged atmospheric circulation caused by the difference in temperature between the equator and the poles. Coriolis effects are generated by pseudoforces, which support the stable west-to-east flows providing the achievable meteorological flows. The model is superimposed by a stationary latitude dependent flow. Under the assumption of no friction, the perturbed model describes zonal west-to-east flows in the upper atmosphere between the Ferrel and Polar cells. In terms of nonlinear modeling for the NS equations, two small parameters are chosen for the viscosity and the rate of the earth's rotation and exact solutions in terms of elementary functions are found using approximate symmetry analysis. It is shown that approximately invariant solutions are also valid in the absence of the flow perturbation to a zonally averaged mean flow.
机译:发现一类薄的旋转球形壳内的二维非线性Navier-Stokes(NS)方程的非平稳精确解是不变和近似不变的。该模型用于描述由赤道和两极之间的温差引起的简单的区域平均大气环流。科里奥利效应是由伪力产生的,伪力支持稳定的西向东流动,提供了可实现的气象流量。该模型由固定的纬度相关流叠加。在没有摩擦的假设下,扰动模型描述了Ferrel和Polar单元之间高层大气中的西向东区域气流。在NS方程的非线性建模方面,选择了两个小参数作为粘度和地球自转速率,并使用近似对称性分析找到了基本函数方面的精确解。结果表明,在不存在对区域平均流量的扰动的情况下,近似不变的解也是有效的。

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