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Forced Convection Heat Transfer of Nanofluids in a Porous Channel

机译:多孔通道中纳米流体的强迫对流换热

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摘要

This article is concerned with the effects of flow and migration of nanoparticles on heat transfer in a straight channel occupied with a porous medium. Investigation of force convective heat transfer of nanofluids in a porous channel has not been considered completely in the literature and this challenge is generally considered to be an open research topic that may require more study. The fully developed flow and steady Darcy-Brinkman-Forchheimer equation is employed in porous channel. The thermal equilibrium model is assumed between nanofluid and solid phases. It is assumed that the nanoparticles are distributed non-uniformly inside the channel. As a result the volume fraction distribution equation is also coupled with governing equations. The effects of parameters such as Lewis number, Schmidt number, Brownian diffusion, and thermophoresis on the heat transfer are completely studied. The results show that the local Nusselt number is decreased when the Lewis number is increased. It is observed that as the Schmidt number is increased, the wall temperature gradient is decreased and as a consequence the local Nusselt number is decreased. The effects of Lewis number, Schmidt number, and modified diffusivity ratio on the volume fraction distribution are also studied and discussed.
机译:本文关注纳米颗粒的流动和迁移对在多孔介质所占据的直通道中传热的影响。在文献中还没有完全考虑对纳米流体在多孔通道中的对流传热的研究,这一挑战通常被认为是一个开放的研究课题,可能需要更多的研究。在多孔通道中采用了充分发展的流动和稳定的Darcy-Brinkman-Forchheimer方程。假设在纳米流体和固相之间存在热平衡模型。假设纳米颗粒在通道内不均匀地分布。结果,体积分数分布方程也与控制方程耦合。完整研究了路易斯数,施密特数,布朗扩散和热泳等参数对传热的影响。结果表明,当Lewis数增加时,局部Nusselt数减少。可以看出,随着Schmidt数的增加,壁温梯度减小,结果局部Nusselt数减小。还研究和讨论了路易斯数,施密特数和修正的扩散率对体积分数分布的影响。

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