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Experimental Investigation of Pulsating Heat Pipes and a Proposed Correlation

机译:脉动热管的实验研究及拟议的相关性

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Pulsating heat pipes are complex heat transfer devices, and their optimum thermal performance is largely dependent on different parameters. In this paper, in order to investigate these parameters, first a closed-loop pulsating heat pipe (CLPHP) was designed and manufactured. The CLPHP was made of copper tubes with internal diameters of 1.8 mm. The lengths of the evaporator, adiabatic, and condenser sections were 60, 150, and 60 mm, respectively. Afterward, the effect of various parameters, including the working fluid (water and ethanol), the volumetric filling ratio (30%, 40%, 50%, 70%, 80%), and the input heat power (5 to 70 W), on the thermal performance of the CLPHP was investigated experimentally. The results showed that the manufactured CLPHP has the best thermal performance for water and ethanol as working fluids when the corresponding filling ratios are 40% and 50%, respectively. Finally, with the available experimental data set of CLPHPs, a power-law correlation based on dimensionless groups was established to predict their input heat flux. Compared with the experimental data, the root-mean-square deviation of the correlation prediction was 19.7%, and 88.6% of the deviations were within ± 30%.
机译:脉动热管是复杂的传热设备,其最佳热性能在很大程度上取决于不同的参数。为了研究这些参数,首先设计并制造了一个闭环脉动热管(CLPHP)。 CLPHP由内径为1.8毫米的铜管制成。蒸发器,绝热和冷凝器的长度分别为60、150和60 mm。然后,影响各种参数,包括工作流体(水和乙醇),体积填充率(30%,40%,50%,70%,80%)和输入热功率(5至70 W) ,对CLPHP的热性能进行了实验研究。结果表明,当相应的填充比分别为40%和50%时,所制造的CLPHP具有对水和乙醇作为工作流体的最佳热性能。最后,利用可用的CLPHP实验数据集,建立了基于无量纲基团的幂律相关性,以预测其输入热通量。与实验数据相比,相关性预测的均方根偏差为19.7%,其中88.6%的偏差在±30%以内。

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