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Cooling performance of a hybrid refrigeration system designed for telecommunication equipment rooms

机译:专为电信机房设计的混合制冷系统的制冷性能

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摘要

During the last several years, the power density and thermal density of telecommunication equipments have been increased. The optimum control of the PCB surface temperature is very important for obtaining high performance and operation reliability of telecommunication equipments. In this study, the cooling characteristics of telecommunication equipments were measured and analyzed as a function of the equipments' heat density. In addition, the performance of a novel hybrid refrigeration system for telecommunication equipment rooms was measured at various operating conditions. The PCB surface temperature ranged from 35 to 60℃, which was relatively higher than the air temperature due to heat trapping and improper air distribution. The hybrid refrigeration system operated in the vapor compression cooling mode at high outdoor temperatures, but in the secondary fluid cooling mode at low outdoor temperatures. The outdoor temperature for the mode switch was approximately 8.3℃. The COP of the hybrid refrigeration system was significantly enhanced at low outdoor temperatures as compared with the conventional vapor compression system due to no operation of the compressor.
机译:在最近几年中,电信设备的功率密度和热密度已经增加。 PCB表面温度的最佳控制对于获得电信设备的高性能和操作可靠性非常重要。在这项研究中,测量和分析了电信设备的冷却特性,并将其作为设备热密度的函数。另外,在各种操作条件下测量了用于电信机房的新型混合制冷系统的性能。 PCB的表面温度在35至60℃之间,这是由于热量滞留和空气分配不当而导致的,相对高于空气温度。混合制冷系统在室外高温下以蒸气压缩冷却模式运行,但在室外低温下以二次流体冷却模式运行。模式开关的室外温度约为8.3℃。与传统的蒸气压缩系统相比,由于没有压缩机运行,混合制冷系统的COP在室外温度较低的情况下得到了显着提高。

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