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Mean-field theory of differential rotation in density stratified turbulent convection

机译:密度分层湍流对流中差分旋转的平均场理论

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A mean-field theory of differential rotation in a density stratified turbulent convection has been developed. This theory is based on the combined effects of the turbulent heat flux and anisotropy of turbulent convection on the Reynolds stress. A coupled system of dynamical budget equations consisting in the equations for the Reynolds stress, the entropy fluctuations and the turbulent heat flux has been solved. To close the system of these equations, the spectral tau approach, which is valid for large Reynolds and Peclet numbers, has been applied. The adopted model of the background turbulent convection takes into account an increase of the turbulence anisotropy and a decrease of the turbulent correlation time with the rotation rate. This theory yields the radial profile of the differential rotation which is in agreement with that for the solar differential rotation.
机译:已经开发出密度分层湍流对流中的差分旋转的平均场理论。 该理论基于湍流热通量的组合效应和湍流对流对雷诺应力的各向异性。 解决了在雷诺应力,熵波动和湍流热通量的等式中组成的动态预算方程的耦合系统已经解决。 为了关闭这些等式的系统,已经应用了对大型雷诺和Peclet号有效的光谱Tau方法。 所采用的背景湍流对流模型考虑了湍流各向异性的增加和随着旋转速率的湍流相关时间的降低。 该理论产生差分旋转的径向轮廓,这与太阳差动旋转一致。

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