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Experimental and numerical study on charging processes of an ice-on-coil thermal energy storage system

机译:盘管式冰蓄热系统充电过程的实验与数值研究

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In this study, an external melt ice-on-coil thermal storage was studied and tested over various inlet conditions of secondary fluid-glycol solution-flow rate and temperature in charging process. Experiments were conducted to investigate the effect of inlet conditions of secondary fluid and validate the numerical model predictions on ice-on-coil thermal energy storage system. The total thermal storage energy and the heat transfer rate in the system were investigated in the range of 10 l min{sup}(-1)≤V{top}·≤ 60 l min{sup}(-1): A new numerical model based on temperature transforming method for phase change material (PCM) described by Faghri was developed to solve the problem of the system consisting of governing equations for the heat transfer fluid, pipe wall and PCM. Numerical simulations were performed to investigate the effect of working conditions of secondary fluid and these were compared with the experimental results. The numerical results verified with experimental investigation show that the stored energy rises with increasing flow rate a decreasing tendency. It is also observed that the inlet temperature of the fluid has more influence on energy storage quantity than flow rate.
机译:在这项研究中,研究了外部熔融的线圈上冰蓄热,并在装料过程中在二次流体-乙二醇溶液的流量和温度的各种入口条件下进行了测试。进行了实验,以研究二次流体的入口条件的影响,并验证了盘绕式冰蓄热系统的数值模型预测。在10 l min {sup}(-1)≤V{top}·≤60 l min {sup}(-1)的范围内研究了系统中的总储热能和传热速率:一个新的数值为了解决由传热流体,管壁和PCM的控制方程组成的系统问题,开发了Faghri描述的基于相变材料(PCM)的温度变换方法的模型。进行了数值模拟以研究二次流体的工作条件的影响,并将其与实验结果进行了比较。实验研究的数值结果表明,储能随着流量的增加而增加,呈下降的趋势。还观察到,流体的入口温度对能量存储量的影响大于流速的影响。

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