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Hall Effects on Unsteady MHD Three Dimensional Flow through a Porous Medium in a Rotating Parallel Plate Channel with Effect of Inclined Magnetic Field

机译:倾斜磁场对旋转平行平板通道中多孔介质非稳态MHD三维流动的霍尔效应

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In this paper, we make an initial value investigation of the unsteady flow of incompressible viscous fluid between two rigid non-conducting rotating parallel plates bounded by a porous medium under the influence of a uniform magnetic field of strength H0 inclined at an angle of inclination α with normal to the boundaries taking hall current into account. The perturbations are created by a constant pressure gradient along the plates in addition to the non-torsional oscillations of the upper plate while the lower plate is at rest. The flow in the porous medium is governed by the Brinkman’s equations. The exact solution of the velocity in the porous medium consists of steady state and transient state. The time required for the transient state to decay is evaluated in detail and the ultimate quasi-steady state solution has been derived analytically. Its behaviour is computationally discussed with reference to the various governing parameters. The shear stresses on the boundaries are also obtained analytically and their behaviour is computationally discussed.
机译:在本文中,我们对在以倾斜角α倾斜的均匀磁场H0的影响下,由多孔介质界定的两个刚性非导电旋转平行板之间不可压缩粘性流体的非稳态流动进行了初步研究。垂直于边界并考虑霍尔电流。除了在下板静止时上板上的非扭转振动之外,还通过沿板的恒定压力梯度产生扰动。多孔介质中的流动由Brinkman方程控制。多孔介质中速度的精确解包括稳态和瞬态。详细评估了瞬态衰减所需的时间,并通过分析得出了最终的准稳态解。参照各种控制参数对它的行为进行了计算讨论。还可以通过分析获得边界上的剪应力,并通过计算讨论其行为。

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