Fluid Flow in Between the Differentially Rotating Spherical Shells in the Presence of Toroidal Magnetic Field

B. Sharma, N. Srivastava
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引用次数: 1

Abstract

The behavior of fluid flow in differentially rotating shells with radii a and b where a < b, is discussed in the magnetic field’s presence. Out of the two significant elements of the magnetic field which are toroidal and poloidal, the toroidal magnetic field plays the dominant role for determining the behavior of fluid flow in the case of the rotating bodies. The solution for modelled equations is observed by perturbation method. Also the solution for flow quantities are observed by variable separable method for specific value of constant used in the abovementioned method.
环向磁场作用下流体在差转球壳间的流动
讨论了在磁场作用下,半径为a和b且半径为a < b的差转壳内流体的流动行为。在磁场的两个重要元素环面和极面中,环面磁场在决定旋转体的流体流动行为方面起着主导作用。用摄动法观察了模型方程的解。对于上述方法中使用的常数的特定值,用变量可分法观察流量的解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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