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Extending the validity of lumped capacitance method for large Biot number in thermal storage application

机译:扩展集总电容方法在热储存中大比奥数的有效性

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In a typical thermal energy storage system, a heat transfer fluid is usually used to deposit/extract heat when it flows through a packed bed of solid thermal storage material. A one-dimensional model of the heat transfer and energy storage/extraction for a packed-bed thermal storage system has been developed previously by the authors. The model treats the transient heat conduction in the thermal storage material by using the lumped capacitance method, which is not valid when the Biot number is large. The current work presents an effective heat transfer coefficient between the solid and fluid for large Biot numbers. With the corrected heat transfer coefficient, the lumped capacitance method can be applied to model the thermal storage in a wide range of Biot numbers. Four typical structures for the solid thermal storage material are considered. Formulas for the effective heat transfer coefficient (and effective Biot number) are presented. To verify the prediction by the lumped capacitance method using the effective heat transfer coefficient, we compare the results to the corresponding analytical solutions. The results are in very good agreement. The effective heat transfer coefficient extended the validity of the lumped capacitance method to large Biot numbers, which is of significance to the analysis of thermal energy storage systems.
机译:在典型的热能存储系统中,当传热流体流经固体蓄热材料的填充床时,通常用于沉积/提取热量。作者先前已经开发了填充床储热系统的传热和能量存储/提取的一维模型。该模型使用集总电容法处理蓄热材料中的瞬态热传导,当比奥数大时无效。当前的工作为大比奥数提供了固体和流体之间的有效传热系数。借助校正后的传热系数,集总电容法可用于在大范围的毕奥特数内模拟蓄热。考虑了固态储热材料的四种典型结构。给出了有效传热系数(和有效比奥数)的公式。为了验证使用有效传热系数的集总电容法进行的预测,我们将结果与相应的解析解进行了比较。结果非常吻合。有效的传热系数将集总电容法的有效性扩展到大比奥数,这对于分析热能存储系统具有重要意义。

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