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A novel energy-saving method for air-cooled chiller plant by parallel connection

机译:空冷机组并联的节能新方法

摘要

A novel method was put forward for improving the energy efficiency of air-cooled water chiller plant operating on part load conditions. The conventional multiple-chiller plant was proposed to be integrated into one refrigeration cycle, by connecting those separate compressors, condensers and evaporators in parallel, respectively. The integrated multiple-chiller plant uses the electronic expansion valve to control refrigerant flow, achieving variable condensing temperature control. A prototype composed of four reciprocating compressors (including one variable-speed compressor), with total nominal cooling capacity of 120 kW was simulated and experimented. Both the simulative and experimental results indicated that applying this novel energy-saving method, the air-cooled chiller plant could get a significant performance improvement on various part load ratio (PLR) conditions, due to the apparent decrease of condensing temperature and some increase of evaporating temperature. Under the same outdoor temperature of 35 °C, when the PLR decreased from 100% to 50%, the COP increased by about 16.2% in simulation and 9.5% in experiment. Also, the practical refrigeration output ratio of the system was 55% on the condition of 50% PLR.
机译:提出了一种新的方法来提高在部分负荷条件下运行的风冷水冷式机组的能效。提出通过将并联的压缩机,冷凝器和蒸发器分别并联,将传统的多冷机设备集成到一个制冷循环中。集成式多冷水机组使用电子膨胀阀控制制冷剂流量,实现可变的冷凝温度控制。由四台往复式压缩机(包括一台变速压缩机)组成的原型进行了模拟和试验,其总标称制冷量为120 kW。仿真和实验结果均表明,采用这种新型节能方法,由于冷凝温度明显降低,而冷凝温度明显提高,因此在各种部分负荷率(PLR)条件下,风冷式冷水机组均可获得显着的性能改善。蒸发温度。在相同的室外温度35°C下,当PLR从100%降低到50%时,在模拟中COP大约增加16.2%,在实验中COP大约增加9.5%。另外,在PLR为50%的条件下,系统的实际制冷输出率为55%。

著录项

  • 作者

    Zhang X; Xu G; Chan KT; Xia Y;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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