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An Experimental Study of Small-Diameter Wickless Heat Pipes Operating in the Temperature Range 200 ℃ to 450 ℃

机译:小直径无芯热管在200℃至450℃温度范围内运行的实验研究

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摘要

An experimental investigation is reported for medium-temperature, wickless, small-diameter heat pipes charged with environmentally sound and commercially available working fluids. The wickless heat pipes (thermosyphons) studied have many applications in heat recovery systems since their operational temperature range is between 200℃ and 450℃. The heat pipes investigated had an internal diameter of 6 mm and a length of 209 mm. The lengths of evaporator and condenser sections were 50 mm and 100 mm, respectively. The working fluids tested were diphenyl based: Therminol VP1 and Dowtherm A. High-grade stainless steel was chosen as the shell material for the heat pipes to provide chemical compatibility between heat pipe casing material and working fluids at elevated temperatures. Thermal resistances of less than 0.4 K/W have been achieved at working temperatures of up to 420℃ with an effective thermal conductivity of 20 kW/m-K, which corresponds to an axial heat flux of 2.5 MW/m~2. Even for such small-diameter heat pipes, the experimental data for the evaporator showed good agreement with Rohsenow's pool boiling correlation.
机译:据报道,对装有环境友好和可商购的工作流体的中温,无芯,小直径热管进行了实验研究。研究的无芯热管(热虹吸管)由于其工作温度范围在200℃至450℃之间,因此在热回收系统中具有许多应用。所研究的热管的内径为6毫米,长度为209毫米。蒸发器和冷凝器部分的长度分别为50 mm和100 mm。测试的工作流体是基于二苯基的:Therminol VP1和DowthermA。选择高级不锈钢作为热管的外壳材料,以在高温下提供热管外壳材料和工作流体之间的化学相容性。在高达420℃的工作温度下实现了小于0.4 K / W的热阻,有效热导率为20 kW / m-K,相当于轴向热通量为2.5 MW / m〜2。即使对于这种小直径的热管,蒸发器的实验数据也显示出与Rohsenow的池沸腾相关性很好的一致性。

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