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Experimental Investigation of Thermal and Pressure Performance in Computer Cooling Systems Using Different Types of Nanofluids

机译:使用不同类型的纳米流体的计算机冷却系统的热和压力性能的实验研究

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摘要

A modern computer generates a great amount of heat while working. In order to secure appropriate working conditions by extracting the heat, a specific mechanism should be used. This research paper presents the effect of nanofluids on the microchannel heat sink performance of computer cooling systems experimentally. CeO2, Al2O3 and ZrO2 nanoparticles suspended in 20% ethylene glycol and 80% distilled water are used as working fluids in the experiment. The concentration of the nanoparticles ranges from 0.5% to 2%, mass flow rate ranges from 0.028 kg/s to 0.084 kg/s, and the ambient temperature ranges from 25 °C to 40 °C. Regarding the thermal component, parameters such as thermophysical properties of the nanofluids and base fluids, central processing unit (CPU) temperature, heat transfer coefficient, pressure drop, and pumping power have been experimentally investigated. The results show that CeO2-EG/DW, at a concentration of 2% and a mass flow rate of 0.084 kg/s, has with 8% a lower temperature than the other nanofluids and with 29% a higher heat transfer coefficient compared with the base fluid. The Al2O3-EG/DW shows the lowest pressure drop and pumping power, while the CeO2-EG/DW and ZrO2-EG/DW show the highest. However, a slight increase of pumping power and pressure drop can be accepted, considering the high improvement that the nanofluid brings in computer cooling performance compared to the base fluid.
机译:现代计算机在工作时会产生大量热量。为了通过散热来确保适当的工作条件,应使用特定的机制。本研究论文通过实验展示了纳米流体对计算机冷却系统微通道散热器性能的影响。实验中,将悬浮在20%乙二醇和80%蒸馏水中的CeO2,Al2O3和ZrO2纳米颗粒用作工作流体。纳米颗粒的浓度为0.5%至2%,质量流量为0.028kg / s至0.084kg / s,并且环境温度为25℃至40℃。关于热成分,已经对诸如纳米流体和基础流体的热物理性质,中央处理器(CPU)温度,传热系数,压降和泵送功率等参数进行了实验研究。结果表明,CeO2-EG / DW的浓度为2%,质量流量为0.084 kg / s,与其他纳米流体相比,温度降低了8%,传热系数则比其他纳米流体降低了29%。基础液。 Al2O3-EG / DW的压降和泵浦功率最低,而CeO2-EG / DW和ZrO2-EG / DW的压力最高。但是,考虑到纳米流体与基础流体相比带来的计算机冷却性能的巨大提高,可以接受泵浦功率和压降的略微增加。

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