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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Optimization of thermal performances and pressure drop of rectangular microchannel heat sink using aqueous carbon nanotubes based nanofluid
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Optimization of thermal performances and pressure drop of rectangular microchannel heat sink using aqueous carbon nanotubes based nanofluid

机译:基于水性碳纳米管的纳米流体优化矩形微通道散热器的热性能和压降

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摘要

The present work focuses on analytical optimization of a rectangular microchannel heat sink using aqueous carbon nanotubes based nanofluid as coolant. The particles weight concentration used in this study is 0.01%. The density, the thermal conductivity and the rheological behavior of the nanofluid are experimentally investigated in order to evaluate the thermal resistance and the pumping power in microchannel under laminar flow. An analytical approach of optimization scheme was applied; it is compiled from a systematic thermal resistance model as an analysis method and the elitist non-dominated sorting genetic algorithm (NSGA2). The effects of the temperature, the channel aspect ratio, the channel wall ratio and the use of aqueous carbon nanotubes based nanofluid on the thermal resistance and the pumping power are investigated. The optimized results showed that use of the nanofluid as a working fluid reduce the total thermal resistance and can enhance significantly the thermal performances of the working fluid at high temperatures.
机译:本工作着重于基于水性碳纳米管的纳米流体作为冷却剂的矩形微通道散热器的分析优化。本研究中使用的颗粒浓度为0.01%。实验研究了纳米流体的密度,热导率和流变行为,以评估层流下微通道中的热阻和泵浦功率。应用了一种优化方案的解析方法。它是从系统的热阻模型作为分析方法和精英非主导排序遗传算法(NSGA2)编译而来的。研究了温度,通道长宽比,通道壁比以及水性碳纳米管基纳米流体对热阻和泵浦功率的影响。优化结果表明,将纳米流体用作工作流体会降低总的热阻,并可以显着提高高温下工作流体的热性能。

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