首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >GAS TURBINE OPERATION OFFSHORE; INCREASED OPERATING INTERVAL AND HIGHER ENGINE PERFORMANCE THROUGH OPTIMIZED INTAKE AIR FILTER SYSTEM
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GAS TURBINE OPERATION OFFSHORE; INCREASED OPERATING INTERVAL AND HIGHER ENGINE PERFORMANCE THROUGH OPTIMIZED INTAKE AIR FILTER SYSTEM

机译:海上燃气轮机运行;通过优化的进气滤清器系统,增加了工作间隔并提高了发动机性能

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Optimized operation of gas turbines is discussed for six LM2500PE engines at a Statoil North Sea offshore field. Three engines are generator drivers whilst three engines are compressor drivers. Two of the compressor drive engines are running at peak load (T5.4 control), hence the production rate is limited by the available power from these engines. All of the six engines discussed run continuously without redundancy, gas turbine uptime is therefore critical for the field's production and economy. The performance and operational experience with upgraded inlet air filter systems and online water wash at high water-to-air ratio, as well as successful operation at longer intervals and higher average engine performance are described. For North Sea operation, a key property of the filter system is the ability to handle high humidity and high salt-content through the harsh environment in these waters. The upgraded filter systems analyzed in this paper is a 2-stage system (vane separator stage upstream of the high-efficiency-filter stage), which is a simplified design versus the old traditional 3-stage systems (louvre upstream and vane separator downstream of the filter stage). These 2-stage systems rely on an efficient upstream vane separator to remove the vast majority of water from the airflow before it reaches the high-efficiency filters. The high-efficiency filters are especially designed to withstand moisture. Deposit analysis from the downstream side of the filters has been performed. Extensive testing of both new and used filter elements, of different filter grade and operated at different intervals, has been performed on a filter test rig facility onshore. All six engines have historically been operated with 4-month intervals between maintenance stops. Online wash is performed daily between the maintenance stops at full load (i.e. normal operating load for the subject engine). As a result of successful development and pilot testing of new filters and optimized filter change intervals, as well as successful online water wash, the engine operating intervals are now extended to 6 months with very low deterioration rate. Understanding the gas turbine performance deterioration is of vital importance. Trending of its deviation from the engine baseline facilitates load-independent monitoring of the gas turbine's condition. Instrument resolution and repeatability are key factors in order to get reasonable results from the performance analysis. Improvement of the package instrumentation has been implemented on three of the analyzed engines, for better performance monitoring. As a result of these analyses, a set of monitoring parameters is suggested for effective diagnostics of compressor degradation. Avenues for further research and development are proposed in order to further increase the understanding of the deterioration mechanisms and the gas turbine performance and response.
机译:在挪威国家石油公司(Statoil North Sea)的海上油田,对六台LM2500PE发动机的燃气轮机优化运行进行了讨论。三个引擎是发电机驱动器,而三个引擎是压缩机驱动器。两个压缩机驱动发动机在峰值负载下运行(T5.4控制),因此生产率受到这些发动机可用功率的限制。所讨论的所有六台发动机都连续运行且没有冗余,因此燃气轮机的正常运行时间对于该领域的生产和经济性至关重要。描述了升级进气空气过滤器系统和在高水/空气比下进行在线水洗的性能和操作经验,以及在更长的间隔内成功运行和更高的平均发动机性能。对于北海作业,过滤系统的关键特性是能够通过这些水域中的恶劣环境处理高湿度和高盐分的能力。本文分析的升级的过滤器系统是2级系统(高效过滤器级上游的叶片分离器级),相对于旧的传统3级系统(上游的百叶窗和下游的叶片分离器)是简化的设计过滤器阶段)。这些2级系统依靠高效的上游叶片分离器在气流到达高效过滤器之前从气流中去除绝大多数水。高效过滤器专为抵御潮湿而设计。从过滤器的下游侧进行了沉积物分析。在陆上的过滤器试验台设施上已对不同过滤器等级的新过滤器和使用过的过滤器进行了广泛的测试,并以不同的间隔进行了测试。从历史上看,所有六个发动机的保养间隔时间均为4个月。每天在满负荷维护保养之间(即目标发动机的正常工作负荷)进行在线清洗。由于成功开发和试运行了新滤清器并优化了滤清器更换间隔,并且成功进行了在线水洗,因此发动机的运行间隔现已延长至6个月,且劣化率极低。了解燃气轮机性能恶化至关重要。其偏离发动机基准线的趋势有助于促进独立于负载的燃气轮机状态监测。仪器的分辨率和可重复性是从性能分析中获得合理结果的关键因素。已对三个分析引擎进行了包装仪表的改进,以实现更好的性能监控。这些分析的结果是,建议使用一组监控参数来对压缩机的退化进行有效的诊断。为了进一步增加对劣化机理以及燃气轮机性能和响​​应的理解,提出了进一步研究和开发的途径。

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