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Utilization Of Phase Change Materials In Solar Domestic Hot Water Systems

机译:相变材料在太阳能家用热水系统中的应用

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Thermal energy storage systems which keep warm and cold water separated by means of gravitational stratification have been found to be attractive in low and medium temperature thermal storage applications due to their simplicity and low cost. This effect is known as thermal stratification, and has been studied experimentally thoughtfully. This system stores sensible heat in water for short term applications. Adding PCM (phase change material) modules at the top of the water tank would give the system a higher storage density and compensate heat loss in the top layer because of the latent heat of PCM. Tests were performed under real operating conditions in a complete solar heating system that was constructed at the University of Ueida, Spain. In this work, new PCM-graphite compounds with optimized thermal properties were used, such as 80:20 weight percent ratio mixtures of paraffin and stearic acid (PS), paraffin and palmitic acid (PP), and stearic acid and myristic acid (SM). The solar domestic hot water (SDHW) tank used in the experiments had a 150 L water capacity. Three modules with a cylindrical geometry with an outer diameter of 0.176 m and a height of 0.315 m were used. In the cooling experiments, the average tank water temperature dropped below the PCM melting temperature range in about 6-12 h. During reheating experiments, the PCM could increase the temperature of 14-36 L of water at the upper part of the SDHW tank by 3-4 ℃. This effect took place in 10-15 min. It can be concluded that PS gave the best results for thermal performance enhancement of the SDHW tank (74% efficiency).
机译:已经发现通过重力分层保持热水和冷水分离的热能存储系统由于其简单性和低成本而在中低温热能存储应用中具有吸引力。这种效应称为热分层,并已通过实验进行了深入研究。该系统将显热存储在水中,用于短期应用。在水箱顶部添加PCM(相变材料)模块将为系统提供更高的存储密度,并补偿由于PCM潜热而导致的顶层热量损失。测试是在实际的工作条件下,在西班牙上田大学建造的完整太阳能加热系统中进行的。在这项工作中,使用了具有最佳热性能的新型PCM石墨化合物,例如石蜡和硬脂酸(PS),石蜡和棕榈酸(PP)以及硬脂酸和肉豆蔻酸(SM)的重量比为80:20的混合物)。实验中使用的太阳能家用热水(SDHW)水箱的水容量为150L。使用三个具有圆柱形几何形状的模块,其外径为0.176 m,高度为0.315 m。在冷却实验中,平均罐内水温在约6-12小时内降至PCM熔化温度范围以下。在再热实验中,PCM可以使SDHW储罐上部的14-36 L水温提高3-4℃。此效果发生在10-15分钟内。可以得出结论,PS为提高SDHW储罐的热性能提供了最佳结果(效率为74%)。

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