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Analysis of a Vertical Flat Heat Pipe Using Potassium Working Fluid and a Wick of Compressed Nickel Foam

机译:含钾工作液和压缩镍泡沫芯的垂直扁平热管分析

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Heat at high temperatures, in this work 400–650 °C, can be recovered by use of cooling panels/heat pipes in the walls of aluminum electrolysis cells. For this application a flat vertical heat pipe for heat transfer from a unilateral heat source was analyzed theoretically and in the laboratory, with special emphasis on the performance of the wick. In this heat pipe a wick of compressed nickel foam covered only the evaporator surface, and potassium was used as the working fluid. The magnitudes of key thermal resistances were estimated analytically and compared. Operating temperatures and wick performance limits obtained experimentally were compared to predictions. Thermal deformation due to unilateral heat flux was analyzed by the use of COMSOL Multiphysics ? . The consequences of hot spots at different locations on the wick were analyzed by use of a numerical 2D model. A vertical rectangular wick was shown to be most vulnerable to hot spots at the upper corners.
机译:可以通过使用铝电解池壁中的冷却板/热管来回收高温(在此温度范围为400–650°C)中的热量。对于此应用,理论上和在实验室中分析了用于从单侧热源进行热传递的扁平垂直热管,并特别强调了灯芯的性能。在该热管中,一根压缩的镍泡沫棉芯仅覆盖蒸发器表面,而钾用作工作流体。通过分析估算并比较了关键热阻的大小。通过实验获得的工作温度和油芯性能极限值与预测值进行了比较。使用COMSOL Multiphysics分析单边热通量引起的热变形。 。通过使用数字2D模型分析了灯芯上不同位置的热点的后果。垂直矩形灯芯显示出最容易受到上角热点的伤害。

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