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Numerical study of the transient behaviour of a thermal storage module containing phase-change material

机译:含相变材料的储热模块瞬态行为的数值研究

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In this paper, the transient behaviour of a thermal storage module is studied numerically based on the enthalpy transforming method. The module is composed of a concentric tube, in which the annulus contains the phase-change material (PCM) and the inner tube carries the heat transfer fluid. The full set of governing equations accounting for heat and fluid flow in the inner tube, the change of phase of the PCM in the annulus, and heat conduction in the walls are solved simultaneously as a conjugate problem. A parametric study, based on three different PCMs, one with hypothetical constant properties and the other two with variable properties, is conducted to investigate the effects of outer wall thickness and variable thermo-physical properties of the PCM on the performance of the storage module during the phase-change process. It is observed that property variation effects become more pronounced as the Stefan number increases. Interestingly, more latent heat can be stored at a given time as the thermal diffusivity ratio is increased for both constant and variable property cases. This can prevent the over-sizing of the system based on constant property data. Another feature of considerable interests is the delay in the charging time: the time required for the PCM to store a certain amount of energy when the wall thermal resistance is included. A sample set of predicted data shows an error of at least 22 and/or 7.7 per cent when the property variation and/or wall thermal resistance is neglected, respectively.
机译:本文基于焓变换法对蓄热模块的瞬态行为进行了数值研究。该模块由同心管组成,同心管中的环面包含相变材料(PCM),内管承载传热流体。作为共轭问题,可以同时解决考虑在内管中的热量和流体流动,环空中的PCM相变以及壁中的热传导的全套控制方程。进行了基于三种不同PCM的参数研究,一种具有假设的恒定特性,另一种具有可变的特性,以研究PCM的外壁厚度和可变的热物理特性对存储模块在运行期间的性能的影响。相变过程。可以看到,随着Stefan数的增加,特性变化的影响变得更加明显。有趣的是,在恒定和可变性质的情况下,随着热扩散率的增加,可以在给定的时间存储更多的潜热。这样可以防止基于常量属性数据的系统过大。令人关注的另一个特征是充电时间的延迟:当包括壁热电阻时,PCM存储一定量能量所需的时间。当忽略特性变化和/或壁热阻时,一组预测数据样本显示出至少22%和/或7.7%的误差。

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