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Comprehensive environmental assessment for cooling towers with various controls

机译:各种控制冷却塔的综合环境评估

摘要

Cooling towers are generally used in water-cooled chiller systems, which provide cooling energy for commercial buildings. This article assesses how the various control systems of cooling towers influence plume emissions and the electricity and water consumption of a chilled water system. Integrated with real control of cooling tower fans, chiller and cooling tower models were developed to analyze how the energy performance of a chiller and the water loss rate varied under different operating conditions. The status of air flows through the cooling tower was investigated to judge plume formation under various cooling tower controls. A simulation analysis on a chilled water system serving an office building showed that optimizing the fan speed control of cooling towers enables the annual electricity and water consumption costs to save 4.6% while also reducing the plume generation. The optimum control means adjusting the temperature of cooling water leaving the cooling tower in response to the chiller load and wet bulb outdoor temperature. The results of this article provide important insights into how to enhance the environmental performance of cooling towers for use in water-cooled chiller systems.
机译:冷却塔通常用于水冷式冷却器系统中,该系统为商业建筑提供冷却能量。本文评估了冷却塔的各种控制系统如何影响烟羽排放以及冷冻水系统的电和水消耗。与冷却塔风扇的实际控制集成在一起,开发了冷却器和冷却塔模型,以分析冷却器的能量性能和失水率在不同的运行条件下如何变化。研究了通过冷却塔的气流状态,以判断在各种冷却塔控制下的羽状流形成。对为办公大楼服务的冷冻水系统的仿真分析表明,优化冷却塔的风扇速度控制可以使年度电力和水消耗成本节省4.6%,同时减少烟羽的产生。最佳控制意味着根据冷水机组负荷和湿球室外温度来调节离开冷却塔的冷却水温度。本文的结果为如何增强用于水冷式冷却器系统的冷却塔的环境性能提供了重要的见识。

著录项

  • 作者

    Yu FW; Chan KT;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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