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A Comparison of Fault Detection Methods For a Transcritical Refrigeration System

机译:跨临界制冷系统故障检测方法的比较

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摘要

When released into the atmosphere, traditional refrigerants contribute to climate change several orders of magnitude more than a corresponding amount of carbon dioxide. For that reason, an increasing amount of interest has been paid to transcritical vapor compression systems in recent years, which use carbon dioxide as a refrigerant. Vapor compression systems also impact the environment through their consumption of energy. This can be greatly increased by faulty operation. Automated techniques for detecting and diagnosing faults have been widely tested for subcritical systems, but have not been applied to transcritical systems. These methods can involve either dynamic analysis of the vapor compression cycle or a variety of algorithms based on steady state behavior.In this thesis, the viability of dynamic fault detection is tested in relation to that of static fault detection for a transcritical refrigeration system. Step tests are used to determine that transient behavior does not give additional useful information. The same tests are performed on a subcritical air-conditioner showing little value in dynamic fault detection. A static component based method of fault detection which has been applied to subcritical systems is also tested for all pairings of four faults: over/undercharge, evaporator fouling, gas cooler fouling, and compressor valve leakage. This technique allows for low cost measurement and independent detection of individual faults even when multiple faults are present. Results of this method are promising and allow distinction between faulty and fault-free behavior.
机译:当释放到大气中时,传统的制冷剂对气候变化的贡献要比相应的二氧化碳高几个数量级。因此,近年来,人们越来越关注使用二氧化碳作为制冷剂的跨临界蒸气压缩系统。蒸气压缩系统还通过消耗能量来影响环境。错误的操作可能会大大增加这种情况。用于检测和诊断故障的自动化技术已针对亚临界系统进行了广泛测试,但尚未应用于跨临界系统。这些方法可以涉及蒸汽压缩循环的动态分析,也可以涉及基于稳态行为的各种算法。本文针对跨临界制冷系统,测试了动态故障检测与静态故障检测的可行性。步骤测试用于确定瞬态行为不会提供其他有用信息。对亚临界空调进行相同的测试,对动态故障检测几乎没有价值。还测试了已应用于亚临界系统的基于静态组件的故障检测方法,以对所有四个故障对进行配对:过充/不足,蒸发器结垢,气体冷却器结垢和压缩机阀泄漏。即使存在多个故障,该技术也可以进行低成本的测量并独立检测单个故障。这种方法的结果很有希望,并且可以区分故障行为和无故障行为。

著录项

  • 作者

    Janecke Alex Karl;

  • 作者单位
  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 en_US
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