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Two-dimensional transient thermal analysis of PCM canister of a heat pipe receiver under microgravity

机译:微重力作用下热管接收器PCM罐的二维瞬态热分析

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摘要

High temperature phase change material (PCM) is used as a thermal storage medium of a heat pipe receiver in an advanced solar dynamic system. With both void cavity and phase change considered, thermal performance of the heat pipe receiver was numerically analyzed under microgravity. The results indicate that the PCM contained in the integrated heat pipe performs the averaging function of heat loads. Normal working of wick ensures the uniformity of the heat pipe, thus heat pipe receiver alleviates thermal spot and thermal ratcheting. Void cavity influences the process of phase change. The thermal resistance of void cavity is much higher than that of PCM canister wall. Void cavity prevents heat transfer. PCM melts slowly during sunlight periods and freezes slowly during eclipse periods with the effect of void cavity. Void cavity reduces the utility and thermal storage ability of PCM. The temperature gradient in the PCM zone is very significant because of void cavity. So the thermal stress of heat pipe receiver may increase, and the lifetime may decrease. The research results can be used to guide the designing and optimization of PCM canister for heat pipe receiver.
机译:高温相变材料(PCM)在先进的太阳能动力系统中用作热管接收器的储热介质。考虑到空隙和相变,在微重力作用下对热管接收器的热性能进行了数值分析。结果表明,集成热管中包含的PCM执行了平均热负荷功能。灯芯的正常工作可确保热管的均匀性,因此,热管接收器可减轻热斑和热棘轮现象。空隙腔会影响相变过程。空洞的热阻比PCM罐壁的热阻高得多。空隙腔可防止热传递。在空洞的影响下,PCM在日照期间会缓慢融化,在日食期间会缓慢冻结。空隙腔会降低PCM的效用和储热能力。由于存在空腔,PCM区中的温度梯度非常重要。因此,热管接收器的热应力可能会增加,并且使用寿命可能会缩短。研究结果可为热管接收器PCM罐的设计和优化提供指导。

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