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首页> 外文期刊>International Journal of Heat and Mass Transfer >Experimental investigation of heat transfer and pressure drop in a straight minichannel heat sink using TiO_2 nanofluid
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Experimental investigation of heat transfer and pressure drop in a straight minichannel heat sink using TiO_2 nanofluid

机译:TiO_2纳米流体在直通道微通道散热器中传热和压降的实验研究

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摘要

In this paper, heat transfer and pressure drop characteristic associated with minichannel heat sink is investigated experimentally. TiO_2 nanofluid with 15% weight concentration in water as base fluid is used as a coolant and its performance is compared with the distilled water at heating powers of 100 W, 125 W and 150 W. The results indicate that TiO_2 nanofluid thermal performance is strongly dependent on heating power and its usefulness heat transfer characteristic could be achieved more effectively at lower heating power. However, pressure drop is found to increase with the decrease of heating power and this decrement is more prominent for TiO_2 nanofluid as compared to distilled water due to viscosity variation with temperature. Nusselt number is found invariant with increase or decrease of heating power and hence using distilled water, experimental Nusselt number satisfies Peng and Peterson empirical correlation at all heating powers within 20% accuracy. The lowest wall temperature is measured to be 37.05 °C using TiO_2 nanofluid at Reynolds number of 922 corresponding to heating power of 100 W. Moreover, while passing through the minichannel, an axial rise of base temperature is observed from inlet to outlet of heat sink.
机译:本文研究了与微通道散热器相关的传热和压降特性。以15%重量浓度的水为基础液的TiO_2纳米流体用作冷却剂,并将其性能与100 W,125 W和150 W的加热功率下的蒸馏水进行比较。结果表明,TiO_2纳米流体的热性能与温度有很大关系。关于热功率及其有用性,可以在较低的热功率下更有效地实现传热特性。然而,发现压降随着加热功率的降低而增加,并且由于蒸馏水的粘度变化,与蒸馏水相比,这种降低对于TiO_2纳米流体而言更为明显。发现Nusselt数随加热功率的增加或减少而不变,因此使用蒸馏水,实验Nusselt数满足所有加热功率下Peng和Peterson的经验相关性,准确度在20%以内。使用TiO_2纳米流体,雷诺数为922(对应于100 W的加热功率),测得的最低壁温为37.05°C。此外,在通过微通道时,从散热器的入口到出口观察到基本温度的轴向升高。

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