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An experimental study on the heat transfer characteristics of a heat pipe heat exchanger with latent heat storage. Part Ⅱ: Simultaneous charging/discharging modes

机译:潜热式热管换热器传热特性的实验研究。第二部分:同时充电/放电模式

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In this part of the paper, the performance of the simultaneous charging/discharging operation modes of the heat pipe heat exchanger with latent heat storage is experimentally studied. The experimental results show that the device may operate under either the fluid to fluid heat transfer with charging heat to the phase change material (PCM) or the fluid to fluid heat transfer with discharging heat from the PCM modes according to the initial temperature of the PCM. The melting/solidification curves, the performances of the heat pipes and the device, the influences of the inlet temperature and the mass flow rate of the cold water on the operation performance are investigated by extensive experiments. The experimental results also disclose that under the simultaneous charging/discharging operation mode, although the heat transfer from the hot water directly to the cold water may vary, it always takes up a major part of the total heat recovered by the cold water due to the very small thermal resistance compared with the thermal resistance of the PCM side. The melting/solidification processes taking place in the simultaneous charging/discharging operation are compared with those in the charging only and discharging only processes. By applying a simplified thermal resistance analysis, a criterion for predicting the exact operation modes was derived and used to explain the observed experimental phenomena.
机译:在本文的这一部分,实验研究了具有潜热存储的热管热交换器的同时充/排运行模式的性能。实验结果表明,根据PCM的初始温度,该设备既可以在向相变材料(PCM)充热的情况下进行流体到流体的热传递,也可以在从PCM模式释放热量的情况下在流体到流体的热传递下工作。 。通过大量实验研究了熔融/凝固曲线,热管和设备的性能,入口温度和冷水质量流量对运行性能的影响。实验结果还表明,在同时充放电操作模式下,尽管从热水直接传给冷水的热量可能会发生变化,但由于水的热交换,它始终占据了冷水回收的总热量的主要部分。与PCM侧的热阻相比,热阻非常小。将在同时充放电操作中发生的熔化/凝固过程与仅充放电过程中发生的熔化/固化过程进行比较。通过应用简化的热阻分析,得出了预测精确操作模式的标准,并用于解释观察到的实验现象。

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