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Numerical And Experimental Investigation For Heat Transfer In Triplex Concentric Tube With Phase Change Material For Thermal Energy Storage

机译:蓄热相变三重同心管传热的数值和实验研究

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This paper addresses a numerical and experimental investigation of a thermal energy storage unit involving phase change process dominated by heat conduction. The thermal energy storage unit involves a triplex concentric tube with phase change material (PCM) filling in the middle channel, with hot heat transfer fluid (HHTF) flowing outer channel during charging process and cold heat transfer fluid (CHTF) flowing inner channel during discharging process. A simple numerical method according to conversation of energy, called temperature & thermal resistance iteration method has been developed for the analysis of PCM solidification and melting in the triplex concentric tube. To test the physical validity of the numerical results, an experimental apparatus has been designed and built by which the effect of the inlet temperature and the flow rate of heat transfer fluid (HTF, including HHTF and CHTF) on the thermal energy storage has been studied. Comparison between the numerical predictions and the experimental data shows good agreement. Graphical results including fluid temperature and interface of solid and liquid phase of PCM versus time and axial position, time-wise variation of energy stored/released by the system were presented and discussed.
机译:本文研究了一种热能存储单元的数值和实验研究,该单元涉及以热为主导的相变过程。热能存储单元包括一个三相同心管,中间通道中填充有相变材料(PCM),在充电过程中热传热流体(HHTF)在外部通道中流动,而冷传热流体(CHTF)在放电过程中在内部通道中流动处理。已经开发出一种根据能量转换的简单数值方法,称为温度和热阻迭代方法,用于分析三重同心管中的PCM凝固和熔化。为了测试数值结果的物理有效性,设计并建立了一个实验装置,通过该装置研究了入口温度和传热流体(HTF,包括HHTF和CHTF)的流量对热能存储的影响。 。数值预测与实验数据之间的比较显示出很好的一致性。给出并讨论了图形结果,包括流体温度和PCM固液界面与时间和轴向位置的关系,以及系统存储/释放的能量随时间的变化。

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