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Entropy generation analysis due to heat transfer and nanofluid flow through microchannels: a review

机译:由于传热和纳米流体流经微通道而产生的熵产生分析:综述

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This work presents a detailed review of the entropy generation due to the heat transfer and the fluid flow through different channels. The earlier contribution of the researchers in the form of theoretical, numerical and experimental studies on the entropy generation in the conventional or microchannels, with or without disruption in the flow and with or without the use of nanofluids is reviewed. The brief discussion on the microchannels, disrupted microchannels, nanofluids and entropy generation is presented. Studies performed on the channel cross-sectional shapes and rib shapes for thermal performance optimisation are discussed in the paper. Nanoparticles such as Al_(2)O_(3), Cu, CuO, Ag, SiO_(2), etc. have been used for preparing the nanofluids along with water, ethylene glycol, etc. as base fluids. Additionally, the effect of disruption in flow field on the entropy generation is also discussed. The disruptions in the form of ribs, cavities, vortex generators, etc. have been taken into account. It is hoped that this review article can provide a basis for further research on the irreversibility analysis of the nanofluid flowing through disrupted microchannels to improve the hydrodynamic and thermal performance of the system.
机译:这项工作详细介绍了由于传热和流体流经不同通道而产生的熵。综述了研究人员在理论上,数值上和实验上对常规或微通道中的熵产生,流动是否中断以及是否使用纳米流体的熵的贡献。提出了关于微通道,破坏的微通道,纳米流体和熵产生的简短讨论。本文讨论了为优化热性能而对通道横截面形状和肋形状进行的研究。诸如Al_(2)O_(3),Cu,CuO,Ag,SiO_(2)等纳米颗粒已经与水,乙二醇等一起用作基础流体来制备纳米流体。此外,还讨论了流场中断对熵产生的影响。已经考虑到肋,腔,涡流发生器等形式的破坏。希望这篇综述文章可以为进一步研究流经破坏的微通道的纳米流体的不可逆性分析提供基础,以改善系统的水动力和热性能。

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