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Heat transfer characteristics of an external-fin-assisted two-phase closed thermosyphon: An experimental study

机译:外翅辅助两相封闭热循环的传热特性:实验研究

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In the current paper, the performance of an external-fin-assisted thermosyphon is investigated experimentally. The thermosyphon is produced with a copper tube and includes three parts-the evaporator, the adiabatic, and the condenser. The condenser part is enhanced with external longitudinal fins. In this study, different number of fins, filling ratios (FRs), coolant flow rates, a wide range of heat inputs, and initial absolute pressures are considered. The experiments are carried out by measurement of temperature distribution of the thermosyphon's wall and the temperature difference of the coolant. The results depict that increasing the heat input and FR reduces the thermal resistance, while raising the coolant flow rate augments the thermal resistance. Adding external fins to the condenser causes further condensation, which enhances the thermosyphon thermal performance by a reduction of 26.32% in thermal resistance and an increment of 28.55% in the thermosyphon efficiency.
机译:在目前的纸张中,实验研究了外翅辅助热烃的性能。 热磷酸水用铜管生产,包括三个部分 - 蒸发器,绝热和冷凝器。 用外部纵向翅片增强冷凝器部分。 在该研究中,考虑了不同数量的翅片,填充比(FRS),冷却剂流速,广泛的热输入以及初始绝对压力。 通过测量热虹吸壁的温度分布和冷却剂的温差进行实验。 结果描绘了增加热输入和FR降低了热阻,同时提高了冷却剂流速增强了热阻。 向冷凝器添加外翅片会导致进一步的冷凝,这通过热阻的减少26.32%的耐热性,增强了热循环热性能,呈热循环效率的增量28.55%。

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