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The effect of using connecting holes on heat transfer and entropy generation behaviors in a micro channels heat sink cooled with biological silver/water nanofluid

机译:使用生物银/水纳米流体冷却微通道散热器中传热和熵生成行为的效果

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摘要

The main objective of the present paper is to investigate the effect of using connecting holes on the hydrothermal performance and irreversibility behavior of laminar forced convection flow of a nanofluid (NF) inside a microchannel heat sink (MCHS). The biologically synthesized silver/water NF is employed as coolant. The influences of the volume concentration of NF (Φ), the Reynolds number (Re) and the number of connecting holes on the performance features of MCHS and NF are considered numerically. It was observed that the CPU temperature is reduced and became more uniform due to boosting of Re and Φ, and the consequence augmentation of the convective heat transfer. However, the pumping power and frictional irreversibility get raised as Re and Φ are increased. The figure of merit is above unity for all Re and Φ which indicate that the utilization of connecting holes is a suitable option to improve the MCHS performance from the first-law point of view. The heat transfer irreversibility, however, increased by using the connecting holes. Also, the merit of NF over the pure water is observed for Re of 500 and 2000 and Φ of 0.1% and 1%.
机译:本文的主要目的是研究利用连接孔对微通道散热器(MCH)内纳米流体(NF)内流体迫使对流流动的水热性能和不可逆行为的影响。生物合成的银/水NF用作冷却剂。数值认为,NF(φ),雷诺数(RE),雷诺数(RE)和连接孔数量的影响的影响。观察到CPU温度降低,并且由于RE和φ的提高而变得更加均匀,并且对流热传递的结果增加。然而,随着RE和φ的增加而升高的泵送电源和摩擦不可逆性。所有Re和φ的优点是高于统一,表明连接孔的利用是从一法的观点来改善MCH的性能的合适选择。然而,通过使用连接孔来增加传热不可逆转性。此外,对于500和2000和2000,φ的RE,观察到NF在纯水上的优异,为0.1%和1%。

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