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Analysis of pulsating heat pipe with capillary wick and varying channel diameter

机译:毛细管芯和通道直径变化的脉动热管分析

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Variation in channel diameter is investigated as a means of enhancing heat transfer in a pulsating heat pipe with capillary wick using the model presented here. The model is one-dimensional with slug flow where the momentum equation is solved for each liquid slug. The number and mass of liquid slugs are allowed to vary throughout a simulation. The energy equation is solved both in the wall and wick and in the working fluid. The effects of diameter profile, gravity, fill ratio, and heating and cooling schemes can be studied with the model. Results yield similar trends to what has been experimentally observed. Results also indicate that heat transfer can be enhanced when the diameter of the channel is varied along the channel length, thereby providing increased range of heat load capability, less sensitivity to gravity, and in some cases smaller temperature differentials.
机译:使用此处介绍的模型,研究了通道直径的变化,以增强带有毛细管芯的脉动热管中的传热。该模型是一维带团状流的模型,其中求解了每个液体团状的动量方程。在整个模拟过程中,允许液体块的数量和质量变化。能量方程在壁,芯和工作流体中均可求解。可以使用该模型研究直径分布,重力,填充比以及加热和冷却方案的影响。结果产生的趋势与实验观察到的趋势相似。结果还表明,当通道的直径沿通道长度变化时,可以增强传热,从而提供更大的热负荷能力范围,对重力的敏感性更低,在某些情况下还可以减小温度差。

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