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The impact of refrigerant inlet temperature on the ice storage process in an ice-on-coil storage plate

机译:制冷剂入口温度对钢圈储存板冰蓄冷工艺的影响

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The ice-on-coil storage plate is one of the core devices in the latent heat cold storage system,which benefits both energy and operation cost savings in refrigerated warehouses,especially under the peak-valley price mechanism.Although the structure design of coils and the selection of cold storage agent materials have attracted much research attention,very few research has studied the impact of refrigerant inlet temperature on the thermal performance of an ice-on-coil storage plate.To facilitate the application of ice-on-coil storage plates in the latent heat cold storage system and improve the performance,this study developed a detailed three-dimensional CFD model in ANSYS to investigate the ice storage process of the ice-on-coil storage plate with different refrigerant inlet temperatures.The results showed that a lower refrigerant inlet temperature contributes to a higher heat exchange efficiency,a bigger ice thickness in the same period of time,and a shorter time required for ice storage.And a lower refrigerant inlet temperature can also lead to a higher cold storage rate and cold storage capacity.
机译:线圈存储板是潜热冷藏系统中的核心装置之一,这有利于冷藏仓库中的能量和运营成本,特别是在峰谷价格机制下。虽然线圈的结构设计和冷藏代理材料的选择吸引了很多研究的关注,很少有研究已经研究了制冷剂入口温度对铣铣板的热性能的影响。以方便冰箱储存板的应用在潜热冷藏系统中提高性能,这项研究在ANSYS中开发了一种详细的三维CFD模型,研究了具有不同制冷剂入口温度的冰盘式存储板的冰储存过程。结果表明了一个较低的制冷剂入口温度有助于更高的热交换效率,在同一时间段内更大的冰厚度,以及冰ST所需的时间较短orage.and,较低的制冷剂入口温度也可以导致更高的冷藏率和冷藏容量。

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