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Compressor performance recovery system: which solution and when

机译:压缩机性能恢复系统:哪种解决方案以及何时

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During normal operation, compressor is mainly affected by fouling due to air pollution, which causes its performance to degrade over time. The main solutions to reduce compressor fouling are off-line compressor washing, on-line compressor washing, and advanced air nitration systems. Overall, the choice of the best recovery system for each gas turbine in the specific power plant is not trivial. The aim of this study is to provide a guide to identify the best washing or filter devices for a gas turbine (GT) in a specific power plant site, using literature information and GT users data.Two procedures were conceived in order to have an user-friendly tool. 'Best cleaning device' was developed to help a GT user in the choice of the best devices for recovering compressor performance. Gathering information about GT performance and environmental conditions from real applicatios and literatures, a value of recommendation for each technology is provided.'Best cleaning time' is based on the thermoeconomics theory of'best maintenance time' and it provides the user an estimation about the best time to perform a compressor off-line or on-line washing.Both procedures have been proved on a few real cases, showing good results and indications to more in-depth development.
机译:在正常运行期间,压缩机主要受空气污染造成的结垢影响,这会导致其性能随时间下降。减少压缩机结垢的主要解决方案是离线压缩机清洗,在线压缩机清洗和先进的空气硝化系统。总体而言,为特定电厂中的每个燃气轮机选择最佳回收系统并非易事。这项研究的目的是提供指导,利用文献信息和GT用户数据来确定特定电厂站点中燃气轮机(GT)的最佳清洗或过滤设备。友好的工具。开发了“最佳清洁设备”以帮助GT用户选择恢复压缩机性能的最佳设备。从实际应用和文献中收集有关GT性能和环境条件的信息,提供每种技术的推荐值。“最佳清洗时间”基于热经济学理论的“最佳维护时间”,它为用户提供了有关最佳维护时间的估算。离线或在线清洗压缩机的最佳时间。这两种程序均已在一些实际案例中得到证明,显示出良好的结果并为进一步深入开发提供了迹象。

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