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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Three-Dimensional Rotating Flow of MHD Jeffrey Fluid Flow between Two Parallel Plates with Impact of Hall Current
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Three-Dimensional Rotating Flow of MHD Jeffrey Fluid Flow between Two Parallel Plates with Impact of Hall Current

机译:MHD jeffrey流体的三维旋转流动在两个平行板之间流动,霍尔电流影响

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This article deals with three-dimensional non-Newtonian Jeffrey fluid in rotating frame in the presence of magnetic field. The flow is studied in the application of Hall current, where the flow is assumed in steady states. The upper plate is considered fixed, and the lower is kept stretched. The fundamental equations are transformed into a set of ordinary differential equations (ODEs). A homotopy technique is practiced for a solution. The variation in the skin friction and its effects on the velocity fields have been examined numerically. The effects of physical parameters are discussed in various plots.
机译:本文在磁场的存在下涉及旋转框架的三维非牛顿杰弗里液。 在霍尔电流的应用中研究了流程,其中在稳定状态下假设流动。 上板被认为是固定的,并且较低的保持拉伸。 基本方程被转变为一组常微分方程(ODES)。 为解决方案实施了同型技术。 在数值上检查了皮肤摩擦的变化及其对速度场的影响。 在各种图中讨论了物理参数的影响。

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