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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Recoverable Versus Unrecoverable Degradations of Gas Turbines Employed in Five Natural Gas Compressor Stations
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Recoverable Versus Unrecoverable Degradations of Gas Turbines Employed in Five Natural Gas Compressor Stations

机译:在五个天然气压缩机站中使用的燃气轮机的可恢复性与不可恢复性的退化

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摘要

Gas turbines (GT), like other prime movers, experience wear and tear over time, resulting in decreases in available power and efficiency. Further decreases in power and efficiency can result from erosion and fouling caused by the airborne impurities the engine breathes in. To counteract these decreases in power and efficiency, it is a standard procedure to "wash" the engine from time to time. In compressor stations on gas transmission systems, engine washes are performed off-line and are scheduled in such intervals to optimize the maintenance procedure. This optimization requires accurate prediction of the performance degradation of the engine over time. A previous paper demonstrated a methodology for evaluating various components of the GT gas path, in particular, the air compressor side of the engine since it is most prone to fouling and degradation. This methodology combines gas path analysis (GPA) to evaluate the thermodynamic parameters over the engine cycle followed by parameter estimation based on the Bayesian error-in-variable model (EVM) to filter the data of possible noise due to measurement errors. The methodology quantifies the engine-performance degradation over time, and indicates the effectiveness of each engine wash. In the present paper, the methodology was extended to assess both recoverable and unrecoverable degradations of five GT engines employed on TransCanada's pipeline system in Canada. These engines are: three GE LM2500+, one RR RB211-24G, and one GE LM1600 GTs. Hourly data were collected over the past 4 years, and engine health parameters were extracted to delineate the respective engine degradations. The impacts of engine loading, site air quality conditions, and site elevation on engine-air-compressor isentropic efficiency are compared between the five engines.
机译:燃气轮机(GT)与其他原动机一样,会随着时间的流逝而磨损,从而导致可用功率和效率降低。功率和效率的进一步下降可能是由于发动机吸入的空气中的杂质引起的腐蚀和结垢所致。为了抵消功率和效率的这些下降,不时“清洗”发动机是一种标准程序。在气体传输系统上的压缩机站中,发动机清洗是离线进行的,并安排在这样的间隔内以优化维护程序。这种优化要求准确预测发动机随时间的性能下降。先前的论文展示了一种用于评估GT气体路径的各个组成部分的方法,尤其是发动机的空气压缩机侧,因为它最容易结垢和退化。这种方法结合了气体路径分析(GPA)来评估发动机循环中的热力学参数,然后基于贝叶斯可变误差模型(EVM)进行参数估计,以过滤由于测量误差而可能产生的噪声数据。该方法量化了发动机性能随时间的降低,并指出了每次发动机清洗的有效性。在本文中,该方法已扩展到评估加拿大TransCanada管道系统上使用的五台GT发动机的可恢复性和不可恢复性的退化。这些引擎是:三台GE LM2500 +,一台RR RB211-24G和一台GE LM1600 GT。在过去的4年中每小时收集一次数据,并提取发动机健康参数来描述相应的发动机性能下降情况。比较了五个发动机之间的发动机负荷,现场空气质量状况和现场海拔对发动机空气压缩机等熵效率的影响。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power 》 |2016年第2期| 022602.1-022602.10| 共10页
  • 作者单位

    NOVA Chemicals, Centre for Applied Research, Calgary, AB T2E 7K7, Canada;

    NOVA Chemicals, Centre for Applied Research, Calgary, AB T2E 7K7, Canada;

    TransCanada Pipelines Limited, Calgary, AB T2P 5H1, Canada;

    TransCanada Pipelines Limited, Calgary, AB T2P 5H1, Canada;

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