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Analysis of the component characteristics of air-cooled chillers for modelling floating condensing temperature control

机译:气浮式冷凝器温度控制的风冷式制冷机部件特性分析

摘要

This paper considers how the components of air-cooled chillers interact with each other and how this understanding helps model floating condensing temperature control for these chillers. Existing strategies for modelling chillers were reviewed. To assess chiller efficiency, it is important to examine how the heat transfer coefficient of evaporators varies at different part load ratios of the chillers. A mechanistic model has to be used to simulate accurately the heat transfer characteristics of air-cooled condensers, taking into account the local heat transfer coefficients of the air side and the refrigerant side. Floating condensing temperature control is proposed as an alternative to head pressure control to optimize the heat rejection effect of the condensers and, hence, to decrease the condensing temperature. The implications of reducing the condensing temperature for the improvement of chiller efficiency are explained. Strategies for implementing this control by means of simulation and experiment are discussed.
机译:本文考虑了风冷式冷水机的各个组件之间如何相互作用以及这种理解如何帮助对这些冷水机的浮动冷凝温度控制进行建模。审查了现有的冷却器建模策略。为了评估冷却器效率,重要的是检查蒸发器的热传递系数在冷却器的不同部分负载比下如何变化。考虑到空气侧和制冷剂侧的局部传热系数,必须使用机械模型来精确模拟风冷冷凝器的传热特性。提出了浮动冷凝温度控制作为水头压力控制的替代方法,以优化冷凝器的排热效果,从而降低冷凝温度。解释了降低冷凝温度对提高冷却器效率的意义。讨论了通过仿真和实验来实现这种控制的策略。

著录项

  • 作者

    Chan KT; Yu FW;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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