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EXPERIMENTAL EVALUATION OF THE EFFECTIVENESS OF ONLINE WATER-WASHING IN GAS TURBINE COMPRESSORS

机译:燃气轮机压缩机在线洗净效果的实验评估

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An investigation of the effectiveness of online combustion turbine axial compressor washing using various purity grade waters and commercial washing detergents was performed. For this project, blade surface fouling dirt was obtained from gas turbine axial compressor blades installed at various field sites. The dirt was analyzed to determine the composition and consistency of typical blade surface fouling materials. A representative dirt formula and blade coating procedure was developed so that comparative tests could be performed using various cleaning fluids. Dirt coated blades were installed in a wind tunnel capable of simulating compressor operating conditions. A spray nozzle upstream of the blade test section was used for washing blades with five different test liquids to determine the effectiveness or advantages of any liquid. Once this testing was completed, a similar test setup was then utilized to inject a mixture of formulated fouling dirt and the various online cleaning liquids upstream of the blade into the wind tunnel to assess redeposit characteristics. The effect of high-purity water versus regular water on fouling dirt was also studied in separate residue experiments. Results indicate that spraying cleaning fluid into a flowing air stream is a viable means of cleaning a compressor blade. Each of the fluids was able to clean the test blade at both low and high air velocities and at different blade incident angles. Within the parameters/ fluids tested, the results indicate that: 1. The blade cleaning is primarily a mechanical function and does not depend on the type of fluid used for cleaning. The results showed that most of the cleaning occurs shortly after the cleaning fluid is introduced into the flow stream. 2. Dirt removed from the blades may redeposit in other areas as the cleaning fluid is evaporated. Redeposit occurred in flow recirculation zones during the cleaning tests, and heated flow tests demonstrated dirt deposit in the presence of a cleaning fluid. In addition, the type of fluid used for cleaning has no effect on the redeposit characteristics of the dirt. 3. Blade erosion was not found to be a significant issue for the short durations that online water-washing was performed. However, uncontrolled water-washing (or overspray) for extended periods of time did result in measureable leading and trailing edge blade erosions.
机译:对使用各种纯度等级的水和市售洗涤洗涤剂在线燃烧的涡轮轴流式压缩机洗涤的有效性进行了研究。对于该项目,叶片表面积垢是从安装在各个现场的燃气轮机轴向压缩机叶片获得的。分析污垢以确定典型叶片表面结垢材料的组成和稠度。开发了代表性的污垢配方和刮刀涂层程序,以便可以使用各种清洁液进行比较测试。带有污垢的叶片安装在风洞中,该风洞能够模拟压缩机的运行条件。叶片测试部分上游的喷嘴用于用五种不同的测试液体洗涤叶片,以确定任何液体的有效性或优势。一旦完成此测试,然后使用类似的测试设置将配方的积垢污垢和叶片上游的各种在线清洁液的混合物注入风洞中,以评估再沉积特性。在单独的残渣实验中,还研究了高纯水与普通水对污垢的影响。结果表明,向流动的空气流中喷射清洁液是清洁压缩机叶片的可行方法。每种流体都能够以低速和高风速以及不同的刀片入射角清洁测试刀片。在测试的参数/流体中,结果表明:1.刀片清洁主要是机械功能,并不取决于用于清洁的流体类型。结果表明,大多数清洗是在将清洗液引入流中后不久进行的。 2.随着清洁液的蒸发,从刀片上去除的污垢可能会重新沉积在其他区域。在清洁测试过程中,在再循环区域中发生了再沉积,并且加热的流动测试表明在清洁液的存在下会沉积污垢。另外,用于清洁的流体类型对污垢的再沉积特性没有影响。 3.在进行在线水洗的短时间内,未发现刀片腐蚀是一个重大问题。但是,长时间无节制的水洗(或过喷)确实会导致可测量的前缘和后缘叶片腐蚀。

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