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Condensing temperature control to enhance the efficiency of air-cooled chillers

机译:冷凝温度控制以提高风冷式冷水机组的效率

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摘要

This paper describes an operating strategy of condensing temperature control (CTC), which means regulating the set point of condensing temperature based on the outdoor temperature, to enhance the efficiency of air-cooled chillers used in air-conditioned buildings. A mathematical model of an air-cooled chiller is developed for simulation and is validated by using the operating data of an existing chiller and of an experimental chiller. Compared to head pressure control (HPC) with a fixed set point of condensing temperature, CTC brings a moderate rise in the condensing temperature above the outdoor temperature, and hence enables the compressors to operate at a lower condensing pressure through staging more condenser fans. While more condenser fan power is consumed, compressor power can drop considerablely, reducing the annual chiller power consumption by 18.4%. It is suggested that the condensing temperature can be coupled with the outdoor temperature and the part load ratio of chillers to gauge the achievable part load efficiency.
机译:本文介绍了冷凝温度控制(CTC)的操作策略,这意味着根据室外温度调节冷凝温度的设定点,以提高空调建筑物中使用的风冷冷水机组的效率。开发了用于模拟的风冷式冷却器的数学模型,并通过使用现有冷却器和实验性冷却器的运行数据进行了验证。与具有固定冷凝温度设定点的压头压力控制(HPC)相比,CTC可使冷凝温度适度上升至高于室外温度的水平,因此,通过安装更多的冷凝器风扇,可使压缩机在较低的冷凝压力下运行。在消耗更多冷凝器风扇功率的同时,压缩机功率会大大下降,从而使每年的冷却器功率消耗降低了18.4%。建议将冷凝温度与室外温度和冷水机的部分负荷率结合起来,以衡量可达到的部分负荷效率。

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