On the Thermal and Hydrodynamic Stability of a Fluid in a Vertical Slot

M. Sorour
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引用次数: 1

Abstract

This investigation is devoted to studying the thermal and hydrodynamic stability of the conduction regime of natural convection of a fluid with a nonlinear density temperature relationship in a slender slot with different, but constant, temperature walls. Linear perturbation techniques are applied for the transverse two dimensional disturbances to derive a set of two coupled twelfth order partial differential equations; the Galerkin method was used to solve the eigenvalue problem. The results of this analysis indicate that this flow is much more susceptable to thermal stability than to hydrodynamic stability for Prandtl number, Pr > 3·2. On the other hand for Pr < 3·2 the reverse is true.Furthermore, both shear and bouyant mode characteristics are determined for a wide range of Pr.
垂直槽内流体的热稳定性和水动力稳定性研究
本研究致力于研究具有非线性密度温度关系的流体在具有不同但恒定温度壁的细长槽内的自然对流传导状态的热稳定性和流体动力稳定性。将线性摄动技术应用于横向二维扰动,导出两个耦合的十二阶偏微分方程;采用伽辽金方法求解特征值问题。分析结果表明,当普朗特数为Pr >.3·2时,这种流动更容易受到热稳定性的影响而不是流体动力稳定性的影响。另一方面,当Pr < 3·2时,情况正好相反。此外,在较宽的Pr范围内确定了剪切和浮力模态特征。
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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