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The impact of various nanofluid types on triangular microchannels heat sink cooling performance

机译:各种纳米流体类型对三角形微通道散热器散热性能的影响

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This paper discusses the impact of using various types of nanofluids on heat transfer and fluid flow characteristics in triangular shaped microchannel heat sink (MCHS). In this study, an aluminum MCHS performance is examined using water as a base fluid with different types of nanofluids such as A1_2O_3, Ag, CuO, diamond, SiO_2, and TiO_2 as the coolants with nanopartide volume fraction of 2%. The three-dimensional steady, laminar flow and heat transfer governing equations are solved using the finite volume method. It is inferred that diamond-H_2O nanofluid has the lowest temperature and the highest heat transfer coefficient, while A1_2O_3-H_2O nanofluid has the highest temperature and the lowest heat transfer coefficient. SiO_2-H_2O nanofluid has the highest pressure drop and wall shear stress while Ag-H_2O nanofluid has the lowest pressure drop and wall shear stress among other nanofluid types. Based on the presented results, diamond-H_2O and Ag-H_2O nanofluids are recommended to achieve overall heat transfer enhancement and low pressure drop, respectively, compared with pure water.
机译:本文讨论了在三角形微通道散热器(MCHS)中使用各种类型的纳米流体对传热和流体流动特性的影响。在这项研究中,使用水作为基础流体,并使用不同类型的纳米流体(如Al2_2O_3,Ag,CuO,金刚石,SiO_2和TiO_2)作为冷却剂(其纳米粒子的体积分数为2%)来检验铝的MCHS性能。使用有限体积法求解了三维稳态,层流和传热控制方程。可以推断出金刚石-H_2O纳米流体的温度最低,传热系数最高,而Al_2O_3-H_2O纳米流体的温度最高,传热系数最低。在其他纳米流体类型中,SiO_2-H_2O纳米流体的压降和壁切应力最高,而Ag-H_2O纳米流体的压降和壁切应力最低。根据给出的结果,与纯水相比,建议使用Diamond-H_2O和Ag-H_2O纳米流体分别实现整体传热增强和低压降。

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