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THE EXPERIMENTAL STUDY OF HEAT TRANSFER AND DYNAMIC CHARACTERISTICS OF DIRECT EVAPORATIVE INTERNAL-MELT ICE- STORAGE SYSTEM

机译:直接蒸发内融冰储存系统传热特性及动力特性的实验研究

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The direct evaporative internal-melt ice-storage air conditioning is an important branch of the ice-storage technology. Its working principle is: during the charging process the coils in ice-tank play as an evaporator to chill the water into ice, while during the discharging process it works as a subcooler to further reduce the refrigerant temperature at the downstream of condenser. By this process, the full-load operating efficiency of the refrigeration system can be greatly improved and the initial capacity of the air-conditioning system can be reduced as well.In this paper, the experiments were carried out to investigate the heat transfer characteristics and control principle during the icing and melting processes. The tests were based on an inverter air-conditioner system The Nusselt number is measured along the coils for the charging process, and the correlations of Nusselt number were obtained as a function of mass quality and the ice layer thickness. The dynamic characteristics of the system about the charging process and discharging process were studied and the performance curves of the both processes were obtained. Experimental results show the power load shift rate of the experimental system achieves about 23%.
机译:直接蒸发式内部融化储冰空调是储冰技术的重要分支。它的工作原理是:在装料过程中,冰罐中的盘管起蒸发器的作用,将水冷却成冰,而在排出过程中,它用作过冷器,以进一步降低冷凝器下游的制冷剂温度。通过该过程,可以极大地提高制冷系统的满负荷运行效率,并且还可以减小空调系统的初始容量。 本文通过实验研究了结冰和融化过程中的传热特性和控制原理。测试是基于变频空调系统进行的。在充电过程中,沿着线圈测量Nusselt数,并获得Nusselt数与质量,冰层厚度的函数关系。研究了该系统关于充电过程和放电过程的动态特性,并获得了这两个过程的性能曲线。实验结果表明,该实验系统的功率负载转移率达到约23%。

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