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Numerical investigation of different PCM volume on cold thermal energy storage system

机译:冷热能存储系统中不同PCM体积的数值研究

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In general, one of the promising methods to reduce energy consumption and off peak load is the employment of cold thermal energy storage (CTES) in energy systems. In this paper, a numerical investigation is conducted on a CTES system mounted in a freezer to find out the effective phase change material (PCM) volume. A large amount of the cold thermal energy is stored as latent heat during solidification of eutectic solution NaCl-H2O as PCM with −21 °C melting temperature. This latent cold thermal energy is then released into the freezer compartment when the compressor of the refrigeration cycle is off. Because of the space limitation in freezer cabin, CTES system should be designed as much as compact and efficient. Thereby, PCM boxes with the maximum exposed area and different PCM thicknesses of 0.5, 1, 2, 3, 4, 5 and 6 cm are simulated using computational fluid dynamics (CFD) method. The total discharged cold thermal energy, as well as its period, was obtained for all 7 PCM thicknesses. Discharging time per unit of PCM mass (τdisch) is introduced as the ratio of the discharging time of PCM (time of off-compressor) to the total PCM mass to comparison the effectiveness of CTES system. It is revealed that the τdischdoes not rise with the PCM volume, proportionally. Just when the PCM thickness is raised from 2 cm to 3 cm, the τdischimproved significantly for 45% and weakly increased afterward. It means that container with 3 cm thickness would be the best one for this type of storage system.
机译:通常,减少能耗和降低峰值负荷的一种有前途的方法是在能源系统中使用冷热能存储(CTES)。在本文中,对安装在冰箱中的CTES系统进行了数值研究,以找出有效的相变材料(PCM)的体积。在共融溶液NaCl-H2O作为PCM熔化温度为21 C的过程中,大量的冷热能作为潜热存储。然后,当制冷循环的压缩机关闭时,这种潜在的冷热能被释放到冷冻室中。由于冷冻室的空间限制,CTES系统应设计得尽可能紧凑和高效。因此,使用计算流体力学(CFD)方法模拟了最大暴露面积和PCM厚度分别为0.5、1、2、3、4、5和6?cm的PCM盒。对于所有7个PCM厚度,均获得了排出的总冷热能及其周期。引入每单位PCM质量的排放时间(τdisch)作为PCM排放时间(压缩机的时间)与总PCM质量之比,以比较CTES系统的有效性。结果表明,τdisch不随PCM音量成比例增加。刚好将PCM的厚度从2µcm增加到3µcm时,τdischim明显提高了45%,之后又微弱地增加了。这意味着厚度为3 systemcm的容器将是此类存储系统的最佳容器。

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