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A comparative study of the effect of varying wall heat flux on melting characteristics of phase change material RT44HC in rectangular test cells

机译:不同壁热通量对矩形试验细胞相变材料熔化特性的影响的对比研究

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Results of an extensive experimental investigation performed to study the effect of different values of wall heat flux in a rectangular PCM (phase change material) test cell on the melting process are presented. A new experimental system consisting of a rectangular cross-section test cell formed from polycarbonate sheet, copper plates and mica heaters was constructed. During experiments uniform wall heat flux (q(w)(all)'' = 675, 960 and 1295 W/m(2)) were applied to both the left and right sides of the test cell. Thermocouples were used to measure the temperature at different locations inside the PCM and on the surface of the copper plates and an infrared camera was used to measure the polycarbonate sheet external surface temperature distribution. The results show the expected strong correlation between the magnitude of wall heat flux and the melt fraction in the PCM as it drives the convective heat transfer. The transparent polycarbonate wall makes it possible to observe the location of the solid/liquid interface and determine melt fractions. The experiments have produced a significant experimental data set for the validation of numerical models simulating the solid/liquid phase change process and PCM melting in geometrical configurations relevant to, for example, latent heat thermal energy storage systems. (C) 2019 Elsevier Ltd. All rights reserved.
机译:介绍了研究矩形PCM(相变材料)测试电池在熔化过程中研究壁热通量不同值不同值的大量实验研究。构建了由由聚碳酸酯片,铜板和云母加热器形成的矩形横截面试验电池组成的新实验系统。在实验期间,将壁热通量(Q(W)(全部)'= 675,960和1295,960和1295 W / m(2))施加到测试细胞的左侧和右侧。热电偶用于测量PCM内的不同位置处的温度,并在铜板的表面上,使用红外相机测量聚碳酸酯片外表面温度分布。结果表明,在PCM驱动对流热传递时,壁热通量的大小与PCM中的熔体分数之间的预期相关性。透明聚碳酸酯壁使得可以观察固体/液体界面的位置并确定熔体级分。实验已经为模拟实体/液相变化过程和PCM在与例如潜热能储能系统相关的几何配置中熔化的数值模型进行了显着的实验数据集。 (c)2019 Elsevier Ltd.保留所有权利。

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