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Industrial Gas Turbine Performance: Compressor Fouling and On-Line Washing

机译:工业燃气轮机性能:压缩机结垢和在线清洗

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Industrial gas turbines are susceptible to compressor fouling, which is the deposition and accretion of airborne particles or contaminants on the compressor blades. This paper demonstrates the blade aerodynamic effects of fouling through experimental compressor cascade tests and the accompanied engine performance degradation using TURBOMATCH, an in-house gas turbine performance software. Similarly, on-line compressor washing is implemented taking into account typical operating conditions comparable with industry high pressure washing. The fouling study shows the changes in the individual stage maps of the compressor in this condition, the impact of degradation during part-load, influence of control variables, and the identification of key parameters to ascertain fouling levels. Applying demineralized water for 10min, with a liquid-to-air ratio of 0.2%, the aerodynamic performance of the blade is shown to improve, however most of the cleaning effect occurred in the first 5 min. The most effectively washed part of the blade was the pressure side, in which most of the particles deposited during the accelerated fouling. The simulation of fouled and washed engine conditions indicates 30% recovery of the lost power due to washing.
机译:工业燃气轮机易受压缩机结垢的影响,这是空气中颗粒或污染物在压缩机叶片上的沉积和积聚。本文通过实验性的压缩机级联测试演示了叶片结垢的空气动力效应,以及使用内部燃气轮机性能软件TURBOMATCH伴随的发动机性能下降。同样,在线压缩机清洗时要考虑到与工业高压清洗相当的典型运行条件。结垢研究显示了在这种情况下压缩机各个阶段图的变化,部分负荷下的退化影响,控制变量的影响以及确定结垢水平的关键参数的识别。施加软化水10分钟,液空比为0.2%,表明叶片的空气动力学性能有所改善,但是大多数清洁效果都发生在前5分钟。叶片最有效的清洗部分是压力侧,在加速结垢过程中,大部分颗粒沉积在压力侧。对发动机结垢和洗涤状况的模拟表明,由于洗涤而损失的动力可恢复30%。

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