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The numerical simulation and experimental study of heat release in a heat storage system with various diameters of aluminum tubes

机译:各种直径铝管储热系统散热的数值模拟与实验研究

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摘要

Phase change materials (PCMs) can be used to store solar energy. The heat released from PCMs is directly influenced by the efficiency of thermal energy storage and the scope of application. In this study, paraffin was used as the PCM, and was encapsulated in an aluminum tube. The temperature of the inner PCM was measured, and the heat release process of the PCM was simulated. The results indicate that the melt temperature of the PCM ranged from 45 °C to 60 °C, and the latent heat was 177 J/g. The heat release processes of the PCM in different aluminum tubes included three stages: 1) the stage during which no phase change occurred at temperatures above the melt temperature and at a rapidly decreasing temperature; 2) the stage during which phase change occurred at very slowly decreasing temperatures; 3) the stage during which no phase change occurred at temperatures lower than the melt temperature. The temperature of the PCM decreased when the radius of the aluminum tube increased. The temperature results obtained via simulation were similar to the actual temperature data. The total energy released from the PCM increased linearly with the time required to complete the energy release process of the PCM in aluminum tubes with different diameters, as well as with the increase in the aluminum tube diameter. The diameter of the PCM exerted no significant influence on the energy release rate. The relationship between the tube diameter and the time required to complete heat release, and the relationship between the amount of heat released, the diameter of the aluminum tube, and the release time, were established. These equations could predict actual values and provide theoretical guidance for heat release in heat storage systems. They could also be used as a guide in practical production.
机译:相变材料(PCM)可用于存储太阳能。 PCM释放的热量直接受热能存储效率和应用范围的影响。在这项研究中,石蜡用作PCM,并被封装在铝管中。测量内部PCM的温度,并模拟PCM的散热过程。结果表明,PCM的熔融温度在45℃至60℃的范围内,并且潜热为177J / g。 PCM在不同铝管中的放热过程包括三个阶段:1)在高于熔融温度的温度和迅速降低的温度下没有相变的阶段; 2)在非常缓慢降低的温度下发生相变的阶段; 3)在低于熔融温度的温度下不发生相变的阶段。当铝管的半径增加时,PCM的温度降低。通过仿真获得的温度结果与实际温度数据相似。 PCM释放的总能量随完成直径不同的铝管中PCM的能量释放过程所需的时间线性增加,并且随着铝管直径的增加而线性增加。 PCM的直径对能量释放速率没有显着影响。建立了管的直径和完成放热所需的时间之间的关系,以及放出的热量,铝管的直径和释放时间之间的关系。这些方程可以预测实际值,并为蓄热系统中的热量释放提供理论指导。它们也可以用作实际生产中的指南。

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