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Part load efficiency of air-cooled multiple-chiller plants

机译:风冷式多冷水机组的部分负荷效率

摘要

This paper reports an analysis of the energy efficiency of air-cooled chiller plants in buildings and opportunity of improved part load efficiency. Load-frequency profile, weather-load profile and thermal performance lines obtained by simulation of typical office and hotel buildings in a subtropical climate are examined to address the methods of determining the plant size, identifying the loading characteristics, optimizing the combination of multiple-chillers and evaluating the energy saving alternatives in design or retrofit. It is shown that the percentage design load for office is best related to external temperature; for hotels the product of external temperature and humidity is more appropriate as a climatic index. The results indicate that for a particular value of percentage design load, the likely outdoor temperature can be determined statistically, and the consumption can be determined from a set of chiller efficiency curves as a function of chiller part load ratio and entering condenser air temperature. The opportunity for improving the operating efficiency of air-cooled multiple-chiller plants by lowering the condensing temperature at lower outdoor temperatures is discussed.
机译:本文报告了对建筑物中空冷式冷水机组的能源效率的分析以及提高部分负荷效率的机会。研究了通过模拟亚热带气候下的典型办公楼和旅馆建筑而获得的负荷频率曲线,天气负荷曲线和热力性能线,以解决确定工厂规模,识别负荷特征,优化多台制冷机组合的方法并评估设计或改造中的节能替代方案。结果表明,办公室的设计负荷百分比与外部温度最佳相关。对于酒店,外部温度和湿度的乘积更适合作为气候指标。结果表明,对于特定百分比的设计负荷值,可以通过统计方式确定可能的室外温度,并且可以根据一组冷水机效率曲线(取决于冷水机部分负荷率和进入的冷凝器空气温度)来确定消耗量。讨论了通过降低室外较低温度下的冷凝温度来提高风冷式多冷水机组运行效率的机会。

著录项

  • 作者

    Chan KT; Yu FW;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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