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Simulation of heat pipe-assisted latent heat thermal energy storage with simultaneous charging and discharging

机译:同时充放电的热管辅助潜热储热的模拟

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摘要

Melting and solidification of a phase change material (PCM) held within a vertical cylindrical enclosure that is integrated with a heat pipe (HP) is simulated as a single module. The HP is heated from the bottom to melt (charge) the PCM that is positioned in the middle of the HP length, and is cooled from the top to solidify (discharge) the PCM. Three modes of operation are considered in this study (ⅰ) charging-only, (ⅱ) simultaneous charging and discharging, and (ⅲ) discharging-only. All modes of operation are handled with a single HP within a PCM (single HP-PCM) of which the top and bottom sections are inactivated during charging-only and discharging-only modes, respectively. A parametric study of the influence of the PCM enclosure height and input/output heat transfer rates shows that, for the same mass of PCM, a longer enclosure exhibits a lower HP bottom average wall temperature and relatively more PCM melting during simultaneous charging and discharging. Increasing either the input, output, or both heat transfer rates has a significant effect on the temperature of the HP bottom and top sections, but only a minor impact on the temperature of the HP middle section.
机译:将与热管(HP)集成在一起的垂直圆柱形外壳中容纳的相变材料(PCM)的熔化和固化模拟为单个模块。从底部加热HP,以熔化(充电)位于HP长度中间的PCM,然后从顶部冷却以固化(放电)PCM。在本研究中考虑了三种操作模式(ⅰ)仅充电,(ⅱ)同时充电和放电以及(ⅲ)仅放电。所有操作模式均由PCM(单个HP-PCM)中的单个HP处理,在仅充电和仅放电模式下,其顶部和底部分别处于禁用状态。对PCM外壳高度和输入/输出传热速率的影响进行的参数研究表明,对于相同质量的PCM,较长的外壳在同时充放电期间表现出较低的HP底部平均壁温和相对较多的PCM熔化。增加输入,输出或两者的传热速率对HP底部和顶部的温度有显着影响,而对HP中间部分的温度影响很小。

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