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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Comparing the thermal performance of water, Ethylene Glycol, Alumina and CNT nanofluids in CPU cooling: Experimental study
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Comparing the thermal performance of water, Ethylene Glycol, Alumina and CNT nanofluids in CPU cooling: Experimental study

机译:比较水,乙二醇,氧化铝和CNT纳米流体在CPU冷却中的热性能:实验研究

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摘要

The main purpose of this study is to investigate the CPU cooling using Alumina and CNT nanofluids and comparing the obtained results with the cooling performance of the common base fluids (water and Ethylene Glycol). The volume fraction of the Alumina/water nanofluid is considered as 0.1, 0.25 and 0.5(%w/w). Moreover, the volume fractions of CNT in the base fluid are 0.1 and 0.25 (%w/w). The Ethylene Glycol with the volume percent of 30% and 50% have been also employed for the cooling process. Experiments have been carried out for different flow rates. The averaged convection heat transfer coefficients as well as final processor temperatures have been reported for a wide range of parameters. The experimental results along with the confidence intervals are reported. Results show a 4% increase in the convection heat transfer coefficient in the case of Ethylene Glycol (30%). An increase of 6% is also reported by using 0.5% volume fraction of Alumina nanofluid. The best heat transfer enhancement (about 13%) is related to CNT nanofluids with the volume fraction of 0.25% for the flow rate of 21 mL/s.
机译:这项研究的主要目的是研究使用氧化铝和CNT纳米流体进行的CPU冷却,并将获得的结果与常见基础流体(水和乙二醇)的冷却性能进行比较。氧化铝/水纳米流体的体积分数被认为是0.1、0.25和0.5(%w / w)。此外,基础流体中CNT的体积分数为0.1和0.25(%w / w)。体积百分比为30%和50%的乙二醇也已用于冷却过程。已经针对不同的流量进行了实验。对于各种参数,已经报道了平均对流传热系数以及最终处理器温度。报告了实验结果以及置信区间。结果表明,在乙二醇(30%)的情况下,对流传热系数增加了4%。据报道,使用0.5%的氧化铝纳米流体体积分数也增加了6%。最佳传热增​​强(约13%)与CNT纳米流体有关,对于21 mL / s的流速,其体积分数为0.25%。

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