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A study on the thermal energy storage of different phase change materials incorporated with the condenser of air-conditioning unit and their effect on the unit performance

机译:与空调机组冷凝器结合的不同相变材料的热能存储及其对机组性能的影响研究

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A study on the thermal energy storage (TES) of phase change materials (PCM) coupled with the condenser of air conditioning unit (ACU) is carried out for PCM 24 E, PCM 26 E, and PCM 29 Eu. This coupling technique is based on using the cold energy storage (CES) of the PCM by the cold ambient air at night to cool the ACU condenser at daytime. The study is performed during charging and discharging of the CES at various inlet ambient air temperatures and velocities to the PCMs plates at day and night times. The mathematical model of the physical model is solved numerically by using ANSYS-Fluent software. The findings reveal that during the discharging process, the exit air temperature from the PCM plates is reduced with increasing the inlet air temperature and velocity. The coefficient of performant (COP) of the ACU coupled with the PCM is decreased with time. It starts by a higher value for low phase change temperature (PCT) than high PCT and after a period this trend is reversed. The time required to charge completely the PCM with CES for PCM 26 E is smaller than other studied PCMs at the same temperature difference between the PCT and the ambient. Decreasing the PCM plate width has the advantage of reducing the solidification time but it reduces the saving power by about 10.5%. The saving power due to using PCM rises with decreasing the ambient temperature and inlet air velocity. It is about 8.25, 8.4, and 8.95% for PCM 24 E, PCM 26 E, and PCM 29 Eu, respectively at ambient temperature 35 degrees C and air velocity 0.96 m/s. (C) 2019 Elsevier B.V. All rights reserved.
机译:对PCM 24 E,PCM 26 E和PCM 29 Eu进行了相变材料(PCM)与空调机组(ACU)冷凝器耦合的热能存储(TES)研究。此耦合技术基于晚上使用冷空气通过使用PCM的冷能存储(CES)来在白天冷却ACU冷凝器。这项研究是在白天和黑夜以各种进气环境温度和PCM板速度将CES充放电期间进行的。物理模型的数学模型通过使用ANSYS-Fluent软件进行数值求解。这些发现表明,在排放过程中,PCM板的出风温度随着进气温度和速度的增加而降低。与PCM耦合的ACU的性能系数(COP)随时间降低。低相变温度(PCT)的值比高PCT的值更高,并且一段时间后这种趋势被逆转。在PCT与环境温度相同的情况下,用CES为PCM 26 E对PCM完全充电所需的时间比其他研究的PCM小。减小PCM板的宽度具有减少固化时间的优势,但可将节省的功率降低约10.5%。由于使用PCM而节省的功率随着环境温度和进气速度的降低而增加。 PCM 24 E,PCM 26 E和PCM 29 Eu在环境温度35摄氏度和空气速度0.96 m / s时分别约为8.25%,8.4%和8.95%。 (C)2019 Elsevier B.V.保留所有权利。

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