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Experimental Study of a Reversible Loop Heat Pipe

机译:可逆回路热管的实验研究

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An experimental investigation of a reversible loop heat pipe was conducted to determine the operating limits and performance characteristics as a function of the thermophysical and geometric parameters, the heat input, and the cooling intensity. Variations in both the temperature and heat transport capacity were measured and analyzed to accurately evaluate the transient operating characteristics. In addition, the maximum heat transport as a function of the mean evaporator temperature, the ratio of heat transport to heater input power as a function of the mean evaporator temperature, and the overall thermal resistance as a function of the overall heat transport capacity were examined. The results indicated that the operating limits and performance characteristics of these devices were a strong function of the cooling intensity, with the maximum heat transport corresponding to a cooling intensity of 290 W/℃, more than twice that obtained for a cooling intensity of 72 W/℃. Observation of the transient startup characteristics indicated that the optimal mean evaporator temperature for reliable startup was in the range of 35 to 60℃. Using these operating parameters, overall thermal resistances as low as 0.02℃/W were measured.
机译:对可逆回路热管进行了实验研究,以根据热物理和几何参数,热量输入和冷却强度确定运行极限和性能特征。测量并分析了温度和传热能力的变化,以准确评估瞬态运行特性。此外,还检查了最大热传递与平均蒸发器温度的关系,热传递与加热器输入功率的比率与平均蒸发器温度的关系以及总热阻与总热传递能力的关系。 。结果表明,这些器件的工作极限和性能特征是冷却强度的强大函数,最大热传递对应于290 W /℃的冷却强度,是冷却强度为72 W时的两倍。 /℃。对瞬态启动特性的观察表明,可靠启动的最佳平均蒸发器温度为35至60℃。使用这些工作参数,可测得整体热阻低至0.02℃/ W。

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