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Experimental study of water solidification phenomenon for ice-on-coil thermal energy storage application utilizing falling film

机译:利用落叶薄膜钢管热能储存应用水凝固现象的实验研究

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摘要

In summer season, peak load occurs due to high cooling demand during warmest hours. Thus, cold energy storage systems are used to store energy when it is abundant to reduce electrical energy consumption for cooling during peak load time. Thermal energy can be stored using either sensible or latent heat through phase change materials (PCMs). Ice-on-coil is a common method for thermal energy storage, but its heat transfer rate decreases during charging due to the low thermal conductivity of ice. The system considered here is a dynamic direct ice making storage unit that utilizes the high heat transfer coefficient of falling film when it falls on the outside of the tube surface in the form of discrete droplets, jets, or a continuous sheet depending on the flow rate. Five parallel circular tubes subjected to different modes of the falling film were tested for formation of ice after being fed internally by cold ethylene-glycol solution. The accumulated ice was measured by recording the changes in weight of the tubing system during the duration of each experiment using an electronic scale. About 1.73 g/m(2) s of ice was formed on the tubing with a starting heat transfer coefficient of 170 W/m(2) K when the falling film was in the jet mode. The information gained here is presented as design factors that can be used to improve the performance of ice-dependent thermal energy storage systems using PCM.
机译:在夏季,由于温热时间高冷却需求,峰值负荷发生。因此,冷却能量存储系统用于在峰值负载时间期间减少用于冷却的电能消耗时储存能量。可以使用通过相变材料(PCM)的可明智或潜热来储存热能。冰箱是热能储存的常用方法,但由于冰的导热率低,其在充电期间的传热速率降低。这里考虑的系统是动态直接制冰储存单元,当根据流量时,利用下降膜的高传热系数落在管表面的外侧时,这是根据流量的流速。经过冷乙二醇溶液内部进料后,测试经受不同模式的五个平行圆形管进行冰层。通过使用电子秤在每个实验期间记录管道系统的重量变化来测量累积的冰。在射流在喷射模式下,在管道上形成约1.73g / m(2)秒的冰,其起始传热系数为170w / m(2)k。这里获得的信息作为设计因子提供,可用于改善使用PCM的依赖热能存储系统的性能。

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