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GEOMETRIC DESIGN OF SOLAR-AIDED LATENT HEAT STORE DEPENDING ON VARIOUS PARAMETERS AND PHASE CHANGE MATERIALS

机译:依赖于各种参数和相变材料的太阳能辅助潜热库的几何设计

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摘要

The cylindrical latent heat storage tanks considered here are part of a domestic heating system. In this study, the performances of such energy storage tanks are optimized theoretically. Two different models describing the diurnal transient behaviour of the phase change unit were used. The first is suited to tanks where the phase change material (PCM) is packed in cylinders and the heat transfer fluid (HTF) flows parallel to it (mode 1). The second is suited to tanks where pipes containing the fluid are embedded in the PCM (mode 2). The problem (treated as two-dimensional) is tackled with an enthalpy-based method coupled to the convective heat transfer from the HTF. A series of numerical tests are then undertaken to assess the effects of various PCMs, cylinder radii, pipe radii, total PCM volume in the tank, mass flow rates of fluid, and inlet temperatures of the HTF on the storing time. In addition, optimal geometric design of the store depending on these parameters and PCMs is presented.
机译:这里考虑的圆柱形潜热储罐是家庭供暖系统的一部分。在这项研究中,从理论上优化了此类储能罐的性能。使用了两个描述相变单元的昼夜瞬态行为的不同模型。第一种适用于将相变材料(PCM)装在气缸中且传热流体(HTF)与其平行流动的罐(模式1)。第二种适用于将装有流体的管道嵌入PCM的储罐(模式2)。该问题(被视为二维问题)可以通过基于焓的方法与来自HTF的对流传热相结合来解决。然后进行了一系列数值测试,以评估各种PCM,圆柱半径,管道半径,罐中PCM的总体积,流体的质量流率以及HTF的入口温度对存储时间的影响。此外,还根据这些参数和PCM提供了商店的最佳几何设计。

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