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STUDY ON HEAT TRANSFER CHARACTERISTICS OF LOOP HEAT PIPE FOR SOLAR COLLECTOR

机译:太阳能收集器环热管传热特性研究

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We experimentally study the thermal conductance of single-tube and loop heat pipes for a solar collector. The evaporator of the heat pipe is 1 m long, 6 mm in diameter and has 30° inclination. The thermal conductance is defined as the heat transfer rate divided by the temperature difference between the evaporator-wall and the condenser-wall. Effects of heat transfer rate, saturation temperature of the working fluid, liquid filling ratio, inclination angle, and position of the evaporator on the thermal conductance are examined. We found that the thermal conductance of the 30°-inclined loop heat pipe with an upper-evaporator is 40-50 (W/K), which is 1.8 times higher than that of the vertical loop type and 3 times higher than that of the single-tube type. Thus, the inclined loop heat pipe is preferable for a solar collector. There is an optimum liquid filling ratio. When the liquid filling ratio is too small, a dry-out portion appears in the evaporator. When the liquid filling ratio is too large, the liquid flows in the condenser to decrease heat transfer area. Also we numerically analyze the thermal conductance of a vertical loop heat pipe.
机译:我们通过实验研究了太阳能收集器的单管和环热管的热敏。热管的蒸发器为1米,直径为6mm,倾斜30°。导热率被定义为传热速率除以蒸发器壁和冷凝器壁之间的温差。检查了加热速率,工作流体,液体填充比,倾斜角度和蒸发器对热传导上的位置的效果。我们发现,带有上蒸发器的30° - 最整个环热管的导热率为40-50(w / k),比垂直环型的1.8倍,比垂直环型的1.8倍,比单管式。因此,倾斜环热管优选用于太阳能收集器。有最佳的液体灌装比。当液体填充率太小时,蒸发器中出现干燥部分。当液体填充率太大时,液体在冷凝器中流动以减少传热面积。此外,我们还在数值上分析了垂直环热管的热传导。

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