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Effects of Pressure-Induced Density Changes in the Thermal Energy Absorbed by a Micro-Encapsulated Phase-Change Material

机译:微囊化相变材料吸收热能中压力引起的密度变化的影响

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摘要

Density changes produced by pressure increments during melting of a spherically confined phase-change material have an impact on the thermal energy absorbed by the heat storage unit. Several authors have assumed incompressible phases to estimate the volume change of the phase-change material and the thermal balance at the liquid–solid interface. This assumption simplifies the problem but neglects the contribution of density changes to the thermal energy absorbed. In this work, a thermal balance at the interface that depends on the rate of change of the densities and on the shape of the container is found by imposing total mass conservation. The rigidity of the container is tuned through the coupling constant of an array of springs surrounding the phase-change material. This way, the behavior of the system can be probed from the isobaric to the isochoric regimes. The sensible and latent heat absorbed during the melting process are obtained by solving the proposed model through numerical and semi-analytical methods. Comparing the predictions obtained through our model, it is found that even for moderate pressures, the absorbed thermal energy predicted by other authors can be significantly overestimated.
机译:在球形受限的相变材料的熔化过程中,由压力增量产生的密度变化会影响储热单元吸收的热能。一些作者假设不可压缩的相来估计相变材料的体积变化和液固界面处的热平衡。该假设简化了问题,但忽略了密度变化对吸收的热能的影响。在这项工作中,通过施加总质量守恒,发现了界面处的热平衡,该热平衡取决于密度的变化率和容器的形状。容器的刚度通过围绕相变材料的一系列弹簧的耦合常数进行调整。这样,可以从等压状态到等压状态探查系统的行为。通过数值和半解析方法对模型进行求解,得到了熔化过程中吸收的显热和潜热。比较通过我们的模型获得的预测,发现即使对于中等压力,其他作者预测的吸收热能也可能被大大高估。

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