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A Novel Control Strategy for Air-Cooled Twin-Circuit Screw Chillers

机译:风冷双回路螺杆式冷水机组的新型控制策略

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摘要

Air-cooled chillers are generally the major electricity consumers in air-conditioned buildings in the subtropical climate. To improve the energy efficiency of the air-cooled chillers at part load conditions, two or more refrigeration circuits are designed. This paper considers how the use of optimal circuit loading sequence (CLS) enables these chillers to operate more efficiently. A thermodynamic model for the air-cooled chillers with twin refrigeration circuits was developed using TRNSYS and validated using a wide range of operating data. Based on the sophisticated chiller model, an analysis was carried out on how the chiller COP varied with different CLS and variable condensing temperature control (CTC). A chiller plant designed for a representative office building in Hong Kong was investigated to assess the potential electricity savings by use of CLS. 4.2% of the annual electricity consumption by chillers could be achieved with optimal CLS compared with the base case. Under CTC, the coefficient of performance (COP) was improved further, and CTC coupling with optimal CLS would reduce the annual total electricity consumption for cooling by 9.6%.
机译:在亚热带气候中,风冷式冷水机组通常是空调建筑物中的主要用电量。为了提高部分负荷条件下风冷式制冷机的能效,设计了两个或更多制冷回路。本文考虑了最佳电路加载顺序(CLS)的使用如何使这些冷却器更有效地运行。使用TRNSYS开发了具有双制冷回路的风冷式冷水机组的热力学模型,并使用了广泛的运行数据进行了验证。基于复杂的冷水机模型,分析了冷水机COP在不同的CLS和可变冷凝温度控制(CTC)下如何变化。研究了为香港代表处建筑设计的冷水机组,以评估使用CLS可能节省的电量。与基本案例相比,采用最佳CLS可以达到冷水机组年耗电量的4.2%。在CTC下,性能系数(COP)进一步提高,CTC与最佳CLS结合将使每年的冷却总电力消耗减少9.6%。

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