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Constraints of using thermostatic expansion valves to operate air-cooled chillers at lower condensing temperatures

机译:使用恒温膨胀阀在较低的冷凝温度下运行风冷式制冷机的限制

摘要

Thermostatic expansion valves (TXVs) have long been used in air-cooled chillers to implement head pressure control under which the condensing temperature is kept high at around 50 °C by staging condenser fans as few as possible. This paper considers how TXVs prevent the chillers from operating with an increased COP at lower condensing temperatures when the chiller load or outdoor temperature drops. An analysis on an existing air-cooled reciprocating chiller showed that the range of differential pressures across TXVs restricts the maximum heat rejection airflow required to increase the chiller COP, though the set point of condensing temperature is reduced to 22 °C from a high level of 45 °C. It is possible to use electronic expansion valves to meet the differential pressure requirements for maximum chiller COP. There is a maximum of 28.7% increase in the chiller COP when the heat rejection airflow is able to be maximized in various operating conditions. The results of this paper emphasize criteria for lowering the condensing temperature to enhance the performance of air-cooled chillers.
机译:长期以来,恒温膨胀阀(TXV)一直用于风冷冷却器中,以实现头压控制,在这种情况下,通过尽可能少地安装冷凝器风扇,将冷凝温度保持在大约50°C的高温下。本文考虑了当制冷机负荷或室外温度下降时,TXV如何防止制冷机在较低的冷凝温度下以更高的COP运行。对现有的风冷往复式冷水机进行的分析表明,尽管冷凝温度的设定点已从较高的水平降低到22°C,但TXV上的压差范围限制了增加冷水机COP所需的最大排热气流。 45℃。可以使用电子膨胀阀来满足最大冷却器COP的压差要求。当在各种运行条件下都能最大程度地提高散热气流时,冷却器COP最多增加28.7%。本文的结果强调了降低冷凝温度以增强风冷式制冷机性能的标准。

著录项

  • 作者

    Yu FW; Chan KT; Chu HY;

  • 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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