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Effect of evaporation section and condensation section length on thermal performance of flat plate heat pipe

机译:蒸发段和冷凝段长度对平板热管热性能的影响

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摘要

Flat plate heat pipes (FPHPs) are one of the available technologies to deal with the high density electronic cooling problem due to their high thermal conductivity, reliability, and low weight penalty. A series of experiments were performed to investigate the effect of evaporation and condensation length on thermal performance of flat plate heat pipes. In the experiments, the FPHP had heat transfer length of 255 mm and width of 25 mm, and pure water was used as the working fluid. The results show that comparing to vapor chamber, the FPHP could realize long-distance heat transfer; comparing to the traditional heat pipe, the FPHP has large area contact with heat sources; the thermal resistance decreased and the heat transfer limit increased with the increase of evaporation section length; the FPHP would dry out at a lower heating power with the increase of condensation section length, which indicated that the heat transfer limit decreased, but the evaporator temperature also decreased; when the condensation section length approached to evaporation section length, the FPHP had a better thermal performance.
机译:平板热管(FPHP)具有高导热性,可靠性和低重量损失的优点,是解决高密度电子冷却问题的可用技术之一。进行了一系列实验以研究蒸发和冷凝长度对平板热管热性能的影响。在实验中,FPHP的传热长度为255 mm,宽度为25 mm,纯水用作工作流体。结果表明,与蒸气室相比,FPHP可以实现长距离传热。与传统的热管相比,FPHP与热源的接触面积大。随着蒸发段长度的增加,热阻减小,传热极限增大。随着冷凝段长度的增加,FPHP在较低的加热功率下变干,这表明传热极限降低,但蒸发器温度也降低。当冷凝段长度接近蒸发段长度时,FPHP具有更好的热性能。

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