Role of heat source/sink on time dependent free convective flow in a coaxial cylinder filled with porous material: a semi analytical approach

T. Yusuf, Gambo Dauda
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引用次数: 10

Abstract

In this article, the semi analytical solution for a fully developed time dependent free convective flow of a viscous incompressible fluid with heat source/sink in an infinite vertical coaxial cylinder saturated with porous material has been analyzed. The flow was induced by buoyancy forces due to temperature differences caused by the thermal insulation of the inner wall and constant heating of the outer wall. The Laplace transform technique was employed to transform the governing equation from time domain to the Laplace domain. Notwithstanding, a numerical inversing scheme known as Riemann-sum approximation (RSA), renowned for its precision has been utilized to transform the Laplace domain solution to time domain. The accuracy of the numerical technique employed was tested by presenting a comparison with the numerical values obtained using RSA, PDEPE, and steady state solution at large time. The effects of the various flow parameters on the flow formation are exhibited graphically. It is interesting to note that the fluid temperature and velocity increases as time passes. In addition, the velocity can be enhanced and minimized by gradually increasing Darcy number and the viscosity ratio respectively. However, the increase is seen to be more prominent when heat source is applied. The drag on both walls are seen to increase with increase in Darcy number, the reverse trend is observed with increase in the viscosity ratio.
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热源/散热器在多孔材料填充的同轴圆柱体中随时间变化的自由对流中的作用:半解析方法
本文分析了含热源/热源的粘性不可压缩流体在饱和多孔材料的无限垂直同轴圆柱体中完全发展的随时间变化的自由对流半解析解。由于内壁的保温和外壁的不断加热而产生的温差引起的浮力诱导了流动。利用拉普拉斯变换技术将控制方程从时域变换到拉普拉斯域。尽管如此,一种被称为黎曼和近似(RSA)的数值反演方案,以其精度而闻名,已被用于将拉普拉斯域解转换为时域解。通过与RSA、PDEPE和大时间稳态解的数值比较,验证了所采用数值技术的准确性。用图形显示了各种流动参数对流动形成的影响。有趣的是,流体的温度和速度随着时间的推移而增加。逐渐增大达西数和粘度比可以提高流速,减小流速。然而,当施加热源时,这种增加更为突出。两壁面阻力随达西数的增加而增加,随黏度比的增加而相反。
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