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Research on the start-up of close-loop self-circulation evaporative cooling system of large electrical equipment

机译:大型电气设备闭环自循环蒸发冷却系统启动研究

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With the development of large electrical equipment, more and more cooling technologies are introduced to deal with the large amount of heat produced by the consumption. Close-loop self-circulation (CLSC) evaporative cooling technology is a newly developed technique for the cooling of the large electrical equipment. In certain circumstances, the air-cooling condenser is used as the secondary cooler in the evaporative cooling system of large electrical equipments. This paper mainly deal with the start-up of the CLSC evaporative cooling system, experiments and numerical simulations are carried out separately, and the results show that the structure of the inlet has great affect on the start-up of the evaporative cooling system. A reasonable structure can do great help to the start-up and the restart of cooling system.
机译:随着大型电气设备的发展,越来越多的冷却技术被引入以应对由消耗产生的大量热量。闭环自循环(CLSC)蒸发冷却技术是一种用于大型电气设备冷却的新开发技术。在某些情况下,风冷冷凝器在大型电气设备的蒸发冷却系统中用作辅助冷却器。本文主要针对CLSC蒸发冷却系统的启动,分别进行了实验和数值模拟,结果表明,进气口的结构对蒸发冷却系统的启动有很大的影响。合理的结构可以对冷却系统的启动和重新启动起到很大的帮助。

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