UNSTEADY ROTATIONAL MOTION OF A MICROPOLAR FLUID INSIDE A RIGHT CIRCULAR CYLINDER USING STATE SPACE APPROACH

S. Slayi, E. Ashmawy
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Abstract

Abstract In this work, the unsteady rotational motion of an incompressible micropolar fluid inside a right circular cylinder is investigated. The classical no-slip and no-spin boundary conditions are proposed. The problem is solved analytically using the state space approach together with Laplace transform technique. The inverse Laplace transform is carried out numerically using a numerical technique based on Fourier series expansion. Numerical results for the flow field functions are represented graphically for different values of the time and micropolarity parameters.
用状态空间方法研究微极流体在右圆柱内的非定常旋转运动
摘要本文研究了不可压缩微极流体在右圆柱内的非定常旋转运动。提出了经典的无滑移和无自旋边界条件。利用状态空间方法结合拉普拉斯变换技术对该问题进行了解析求解。利用基于傅里叶级数展开的数值技术对拉普拉斯逆变换进行了数值求解。用图形表示了不同时间和微极性参数值下流场函数的数值结果。
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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