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Experimental study of cooling characteristics of water-based alumina nanofluid in a minichannel heat sink

机译:微通道散热器中水基氧化铝纳米流体冷却特性的实验研究

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This paper investigates experimentally the convection heat transfer of Al2O3/water nanofluid with 0–8?wt% concentrations flowing through a parallel minichannel heat sink. A uniform heat flux in the range of 1.2–6.8?W/cm2is applied for heating the heat sink and the Reynolds number is considered in the range of 238–1549. The measured results reveal that the increment of concentration and decrement of flowrate lead to the increase of friction factor. The maximum nanofluid to pure water pressure drop ratio of 1.41 is observed by flowing nanofluid with 8% nanoparticle concentration for Reynolds number of 258. Moreover, it is found that the values of heat transfer effectiveness and figure of merit are more than unity, indicating the beneficial application of Al2O3/water nanofluid as the coolant in the heat sink. The maximum values of heat transfer effectiveness and figure of merit are achieved 1.4 and 1.27 by flowing 8?wt% nanofluid for Reynolds number of 1549. Furthermore, the addition of nanoparticle content decreased the coefficient of performance and the highest value belongs to the pure water. The increment of Reynolds number and nanoparticle content significantly decrease the thermal resistance.
机译:本文实验研究了浓度为0-8wt%的Al2O3 /水纳米流体的对流传热,该对流传热通过平行的微型通道散热器。加热散热器时使用的均匀热通量在1.2–6.8?W / cm2的范围内,雷诺数在238–1549的范围内。测量结果表明,浓度的增加和流量的减少导致摩擦系数的增加。通过以8%雷诺数为258的8%纳米颗粒浓度流动的纳米流体,观察到最大纳米流体与纯水的压降比为1.41。此外,发现传热效率和品质因数均大于1,表明Al2O3 /水纳米流体作为散热器中的冷却剂的有益应用。当1549雷诺数流过8wt%纳米流体时,传热效率和品质因数的最大值分别达到1.4和1.27。此外,添加纳米颗粒含量降低了性能系数,其最大值属于纯水。 。雷诺数和纳米颗粒含量的增加显着降低了热阻。

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