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Upper Limit to the Growth Rate of Perturbation in Rotatory Convection in Couple-Stress Fluid in the Presence of Magnetic Field

机译:磁场作用下偶应力流体旋转惯性扰动增长率的上限

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The thermal instability of a couple-stress fluid acted upon by uniform vertical magnetic field and rotation heated from below is investigated. Following the linearized stability theory and normal mode analysis, the paper through mathematical analysis of the governing equations of couple-stress fluid convection with a uniform vertical magnetic field and rotation, for the case of rigid boundaries shows that the complex growth rate of oscillatory perturbations, neutral or unstable for all wave numbers, must lie inside a semi-circle, in the right half of a complex -plane, where Q is the Chandrasekhar number, is the Taylor number, and F is the couple-stress parameter, which prescribes the upper limits to the complex growth rate of arbitrary oscillatory motions of growing amplitude in a rotatory couple-stress fluid in porous medium heated from below, which provided significant improvement to the result of Khanna and Banyal.
机译:研究了均匀的垂直磁场和从下方加热而旋转的耦合应力流体的热不稳定性。遵循线性化稳定性理论和正态分析,本文通过对具有均匀垂直磁场和旋转的耦合应力流体对流的控制方程进行数学分析,对于刚性边界情况,表明振荡扰动的复杂增长率,对于所有波数,它必须是中性或不稳定的,必须位于半圆内,位于复平面的右半部,其中Q是Chandrasekhar数,是Taylor数,F是偶应力参数,它规定了在从下方加热的多孔介质中,旋转偶合应力流体中振幅不断增大的任意振荡运动的复杂增长率的上限,这大大改善了Khanna和Banyal的结果。

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