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Entropy generation analysis of laminar flow of a nanofluid in a circular tube immersed in an isothermal external fluid

机译:浸入等温外部流体的圆管中纳米流体层流的熵产生分析

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This paper is an analytical study of entropy generation in the laminar flow of nanofluids in a circular tube. The tube is immersed in an isothermal external fluid - which is the most general thermal boundary condition but has not been studied in much detail in literature. Two nanofluids, namely - water - Al2O3 and ethylene glycol-Al2O3 have been chosen for this study. The effects of the external Blot number, non-dimensional temperature difference and volume fraction on the entropy generation characteristics of the flow have been shown through graphs and the physical reasoning behind the observed trends has been discussed threadbare. It is shown that the addition of nanoparticles is beneficial only at smaller Reynolds number and for less viscous base fluids. Most importantly, it is proved that the entropy generated in the case of a tube immersed in an isothermal external fluid is bounded by those for uniform heat flux and uniform wall temperature boundary conditions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文是对圆形管中纳米流体层流中熵产生的分析研究。该管浸入等温的外部流体中,这是最普遍的热边界条件,但文献中并未对此进行详细研究。这项研究选择了两种纳米流体,即-水-Al2O3和乙二醇-Al2O3。通过图表显示了外部印迹数,无量纲温度差和体积分数对流的熵产生特性的影响,并对观察到的趋势背后的物理原因进行了讨论。结果表明,纳米颗粒的添加仅在较小的雷诺数和较低粘度的基液下才是有益的。最重要的是,证明了在将管浸入等温外部流体的情况下所产生的熵被均匀热通量和均匀壁温边界条件所限制。 (C)2015 Elsevier Ltd.保留所有权利。

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