变重力多孔介质中旋转Jeffrey纳米流体的热不稳定性

Pushap Lata Sharma, Deepak Bains, Pankaj Thakur
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引用次数: 1

摘要

研究了重力变化对多孔介质中旋转杰弗里纳米流体热不稳定性的影响。在伽辽金法和正态法的基础上,采用了达西模型。本文研究了h(z)=z2-2z、h(z)=-z2、h(z)=-z、h(z)=-z和h(z)=z等不同的重力参数对静止对流中Jeffrey参数、Taylor数、缓和扩散率比、多孔介质孔隙度、Lewis数和纳米颗粒瑞利数的影响,并用图形表示。我们的发现表明,改变重力参数h(z)=z2-2z对静止对流有更大的稳定作用。我们还发现了该问题在振荡对流情况下出现过稳定的必要条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal instability of rotating Jeffrey nanofluids in porous media with variable gravity
It is investigated how changes in gravity affect the thermal instability rotating Jeffrey nanofluids in porous media. Along with the Galerkin method and normal mode approach, the Darcy model is used. The distinct variable gravity parameters taken in this paper are: h(z)=z2-2z, h(z)=-z2, h(z)=-z and h(z)=z and their effects on the Jeffrey parameter, Taylor number, moderated diffusivity ratio, porosity of porous media, Lewis number and nanoparticle Rayleigh number on stationary convection have been scrutinized and graphically shown. Our finding demonstrates that varying gravity parameter h(z)=z2-2z has more stabilising impact on stationary convection. We have also discovered the necessary condition for overstability in the instance of oscillatory convection for this problem.
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