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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Critical Stability of Almost Adiabatic Convection in a Rapidly Rotating Thick Spherical Shell
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Critical Stability of Almost Adiabatic Convection in a Rapidly Rotating Thick Spherical Shell

机译:快速旋转的厚球形壳中几乎绝热对流的临界稳定性

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In this work, the convection equations in the almost adiabatic approximation is studied for which the choice of physical parameters is primarily based on possible applications to the hydrodynamics of the deep interiors of the Earth and planets and moons of the terrestrial group. The initial system of partial differential equations (PDEs) was simplified to a single second-order ordinary differential equation for the pressure or vertical velocity component to investigate the linear stability of convection. The critical frequencies, modified Rayleigh numbers, and distributions of convection are obtained at various possible Prandtl numbers and in different thick fluid shells. An analytical WKB-type solution was obtained for the case when the inner radius of the shell is much smaller than the outer radius and convective sources are concentrated along the inner boundary.
机译:在这项工作中,研究了几乎绝热近似的对流方程,其物理参数的选择主要是基于对地球深层内部以及地球和行星的卫星和月球的流体动力学的可能应用。最初的偏微分方程组(PDE)简化为一个用于压力或垂直速度分量的二阶常微分方程,以研究对流的线性稳定性。在各种可能的Prandtl数下以及在不同的厚流体壳中获得了临界频率,修正的瑞利数和对流分布。对于壳的内半径远小于外半径且对流源沿内边界集中的情况,获得了解析的WKB型解。

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