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Fluid flow and heat transfer of nanofluids in microchannel heat sink with V-type inlet/outlet arrangement

机译:带有V型进/出口布置的微通道散热器中纳米流体的流体流动和传热

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摘要

The fluid flow and heat transfer characteristics of laminar nanofluid flow in microchannel heat sink (MCHS) with V-Type inlet/outlet arrangement are numerically studied. A constant heat flux boundary condition is applied on the base plate of MCHS and all the other surfaces of MCHS are insulated. Four different kinds of nanofluids are utilized as working fluids which are SiO, AlO, ZnO and CuO dispersed in pure water as a base fluid. Three different volume fractions of 1%, 1.5% and 2% and three distinctive nanoparticle diameters of 30 nm, 40 nm and 60 nm were employed. The results specify that the SiO nanofluid has the uppermost heat transfer rate compared to other tested nanofluids. Increasing the nanoparticles volume fraction together with decreasing the nanoparticles diameter enhances the Nusselt number value. The pressure drop coefficient did not change significantly by using nanofluid with various volume fractions and varied nanoparticle diameters. Moreover, the results indicate that nanofluid can enhance the performance of MCHS with V-shaped inlet/outlet arrangement.
机译:数值研究了V型进/出口布置的微通道散热器(MCHS)中层状纳米流体的流动和传热特性。在MCHS的基板上施加恒定的热通量边界条件,并且MCHS的所有其他表面都已绝缘。使用四种不同类型的纳米流体作为工作流体,它们是分散在纯水中作为基础流体的SiO,AlO,ZnO和CuO。使用三种不同的体积百分比为1%,1.5%和2%,以及三种不同的纳米粒子直径分别为30 nm,40 nm和60 nm。结果表明,与其他测试的纳米流体相比,SiO纳米流体的传热速率最高。增加纳米颗粒的体积分数,同时减小纳米颗粒的直径,可以提高努塞尔数值。通过使用具有各种体积分数和变化的纳米颗粒直径的纳米流体,压降系数没有显着变化。此外,结果表明,纳米流体可以通过V形进/出口排列来增强MCHS的性能。

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