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Numerical study of forced convection flow and heat transfer of a nanofluid flowing inside a straight circular pipe filled with a saturated porous medium

机译:填充饱和多孔介质的直圆管内流动纳米流体流动的强制对流流动和传热的数值研究

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摘要

In this paper, the problem of developing forced convection flow of a nanofluid in a constant-wall-temperature circular tube filled with a porous medium is considered. The flow is steady and Brinkman-Forchheimer-extended Darcy equation model is employed. The thermal-equilibrium model is assumed between nanofluid and solid phase. It is also assumed that nanoparticles are distributed non-uniformly inside the pipe, hence the particles volume fraction equation is also coupled with the governing equations. A numerical study has been performed using the Finite-Volume method to analyze heat transfer coefficient of Al2O3 -water nanofluid. The effects of nanoparticles volume fraction and porosity on fluid flow and heat transfer of nanofluids are studied. The results show that the Nusselt number is increased with increasing particles volume fraction. Moreover, the wall shear stresses are increased. Finally, the effect of porosity on particle volume fraction distribution is studied and discussed in detail. We are confident that the reported results are new and original.
机译:本文认为,考虑了填充有多孔介质的恒定壁温圆管中纳米流体的强制对流流的问题。该流动是稳定的,采用Brinkman-Forchheimer扩展的达西方程模型。在纳米流体和固相之间假设热平衡模型。还假设纳米颗粒在管内不均匀分布,因此粒子体积分数等式也与控制方程耦合。采用有限体积法进行了数值研究,分析了Al2O3-水纳米流体的传热系数。研究了纳米颗粒体积分数和孔隙率对纳米流体流体流动和热传递的影响。结果表明,随着粒子体积分数的增加,营养数增加。而且,壁剪切应力增加。最后,研究了孔隙率对粒子体积分布分布的影响和详细讨论。我们相信报告的结果是新的和原创的。

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