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Non-Darcy mixed convection in a vertical pipe filled with porous medium

机译:充满多孔介质的垂直管中的非达西混合对流

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The present paper reports an analytical as well as numerical investigation of fully developed mixed convective flow in a vertical pipe filled with porous medium. The motion in the pipe is induced by external pressure gradient and buoyancy force. The non-Darcy Brinkman-Forchheimer-extended model has been considered. The Chebyshev spectral-collocation method has been used to solve the coupled differential equations numerically. A comprehensive investigation on the dependency of mixed convective flow on governing parameters indicates that depending on the values of other parameters the velocity profile possess point of inflection beyond a threshold value of Rayleigh number (Ra). In the case of buoyancy-opposed flow, the velocity profile may contain point of inflection in the center zone and point of separation at the vicinity of the wall. The appearance of point of separation causes the back flow near the wall. In contrast to buoyancy-opposed case, where enhancement of Ra increases the magnitude of the center velocity as well as temperature till the distortion appears on both profiles, in buoyancy-assisted case both velocity as well as temperature decrease on increasing Ra at the center. The points of separation as well as inflection die out on reducing the media permeability or increasing magnitude of the form drag coefficient. Further, it was observed that for buoyancy-opposed flow the velocity as well as temperature profiles have a kind of distortion beyond a threshold value of Ra, which is also a function of other governing parameters. In this situation, the heat transfer rate varies abruptly as a function of Ra.
机译:本文报道了在充满多孔介质的垂直管中充分发展的混合对流的分析和数值研究。管道中的运动是由外部压力梯度和浮力引起的。已经考虑了非达西·布林克曼-福希海默扩展模型。 Chebyshev频谱配置方法已用于数值求解耦合微分方程。对混合对流对控制参数的依赖性的综合研究表明,根据其他参数的值,速度曲线的拐点超过瑞利数(Ra)的阈值。在浮力对流的情况下,速度分布可能包含中心区域的拐点和壁附近的分离点。分离点的出现导致壁附近的回流。与浮力相反的情况相反,在这种情况下,Ra的增加会增加中心速度和温度的大小,直到两个轮廓上都出现变形,而在浮力辅助的情况下,速度和温度都会随着中心Ra的增加而降低。分离点和拐点在降低介质渗透性或增加形式阻力系数的幅度时消失。此外,可以观察到,对于浮力相反的流速,速度和温度曲线都具有超出Ra阈值的某种畸变,这也是其他控制参数的函数。在这种情况下,传热速率根据Ra突然变化。

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