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Phase-Change Heat Regenerators: Modeling and Experimental Studies

机译:相变蓄热器:建模和实验研究

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摘要

Modeling of and experiments with heat storage in regenerators packed with phase-change material (PCM) are discussed, as well as the second-law thermodynamic efficiency for the ideal phase-change regenerator (PCR). An algorithm to solve the coupled partial differential equations for heat transfer and storage in the PCR on the bed scale and on the PCM scale is presented. The bed is discretized via the tanks-in-series approximation. The PCM scale is solved by orthogonal collocation applied to the equations, transfoimed to immobilize the melt/solid inteiface and eliminate the effect of spherical geometry. Parametric studies show the effects of specific dimensionless groups. A novel PCM consisting of n-octadecane retained by capillary forces in a porous silica support is used in a lab-scale PCR to verify the model. It visually changes from opaque to semi-transparent when the wax melts, thereby allowing the melt front within the bed to be tracked. Experiments with heated or cooled CO2 passing through the PCR are described. The measured outlet temperature compares qualitatively with model predictions. The model quantitatively predicts melt front movement in the first 60% of the bed. Discrepancies between the model and experiments are linked to significant heat losses.
机译:讨论了装满相变材料(PCM)的蓄热室中蓄热器的建模和实验,以及理想相变蓄热器(PCR)的第二律热力学效率。提出了一种求解耦合的偏微分方程的算法,用于在床规模和PCM规模上进行PCR中的传热和存储。床通过串联的罐近似离散化。 PCM比例尺通过将正交搭配应用于方程来求解,进行变换以固定熔体/固体界面并消除球形几何形状的影响。参数研究显示了特定无量纲组的影响。在实验室规模的PCR中使用由毛细管力保留在多孔二氧化硅载体中的正十八烷组成的新型PCM,以验证模型。当蜡熔化时,它在视觉上从不透明变为半透明,从而可以跟踪床内的熔化前沿。描述了加热或冷却的二氧化碳通过PCR的实验。测得的出口温度与模型预测值进行了定性比较。该模型定量预测熔床前60%的熔体前沿运动。模型和实验之间的差异与大量的热损失有关。

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