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EXPLORATION OF VARIABLE CONDUCTANCE EFFECTS DURING INPUT AND EXTRACTION OF HEAT FROM PHASE CHANGE THERMAL STORAGE

机译:相变热存储输入和提取热量过程中的各种电导效应的探讨

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Previous efforts to model the effectiveness of heat input and extraction from a thermal storage unit have generally been based on the definition of a constant conductance of heat from the working fluid to the phase change storage material. In order to capture the effects of changing thermal resistance between the working fluid and melt front location, this paper presents a method using a resistor network analogy to account for thermal conductance as a function of melt fraction. This expression for thermal conductance is then implemented in an existing numerical framework. Results are validated by comparing calculations for a single unit cell using a quasi-steady Stefan problem approach, a finite difference scheme, and more general form solutions from literature. The variable approach is then compared with an average value for overall thermal conductivity, U, to characterize the performance of a thermal energy storage unit consisting of a series of these unit cells. Overall effectiveness in the thermal energy storage device is found to be within 0.6% agreement when comparing these methods, though local percent deviation can be as high as 113%. Depending on the needed accuracy and use case for such a numerical framework, suggestions are provided on whether an average value for U is sufficient for characterizing such a thermal energy storage device. Discussion is also provided on the flexibility of the computation schemes described by testing the sensitivity of the results via changes in dimension-less input parameters.
机译:先前对热存储装置的热量输入和抽取效率进行建模的努力通常是基于对从工作流体到相变存储材料的恒定热传导的定义。为了捕获工作流体和熔体前沿位置之间热阻变化的影响,本文提出了一种使用电阻器网络类比的方法,将导热系数作为熔体分数的函数。然后,在现有的数值框架中实现这种热传导表达式。通过比较使用准稳态Stefan问题方法,有限差分方案和文献中更一般形式的解决方案对单个晶胞的计算结果,可以验证结果。然后将可变方法与总体导热系数U的平均值进行比较,以表征由一系列这些单元电池组成的热能存储单元的性能。比较这些方法时,发现热能存储设备的总体效率在0.6%的一致性之内,尽管局部百分比偏差可能高达113%。根据这种数值框架的所需精度和使用情况,提出关于U的平均值是否足以表征这种热能存储装置的建议。通过无量纲输入参数的变化来测试结果的敏感性,还讨论了所描述的计算方案的灵活性。

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