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Experimental Investigation of the Effect of Inclination Angle on Heat Pipe Thermal Performance Using Cu-Nanofluids

机译:用Cu-Nanofluids对倾斜角度对热管热性能影响的实验研究

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In this paper, thermal performance of a heat pipe has been studied experimentally using 50 nm copper nanoparticles deionized water and acetone based nanolluids. The effect of nanoparticle concentrations (0.5 and 1%) on thermal resistance of heat pipe was investigated. Moreover, the effect of angle of inclination on thermal performance of the heat pipe was examined and the average temperature distribution of the heat pipe was recorded too. Regardless of the nanofluid type used, results showed that when the nanoparticles concentration increases, the evaporator section temperature drops whereas the condenser section temperature increases. Furthermore, for the same heat input, the higher the particle concentration, the less the thermal resistance was. It was also observed that the thermal performance of the heat pipe is best at 75° and 45° angles for deionized water based nanofluid and acetone based nanofluid, respectively.
机译:本文使用50nm铜纳米颗粒去离子水和丙酮基纳米烷基研究了热管的热性能。研究了纳米颗粒浓度(0.5和1%)对热管热阻的影响。此外,研究了倾斜角度对热管的热性能的影响,并记录了热管的平均温度分布。无论使用的纳米流体型如何,结果表明,当纳米颗粒浓度增加时,蒸发器部分温度下降,而冷凝器部分温度升高。此外,对于相同的热输入,颗粒浓度越高,热阻越少。还观察到,热管的热性能最佳地在75°和45°角,分别用于去离子水的纳米流体和基于丙酮的纳米流体。

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