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IMPROVING TURBOMACHINERY HEALTH MONITORING USING ADVANCED SHAFT TELEMETRY SYSTEM

机译:使用先进的轴遥测系统改善涡轮机械的健康监测

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Turbine-generator shaft systems used in power generation applications are exposed to degradation mechanisms that could result in high consequence failures if not discovered prior to damage accumulation. Grid-induced torsional vibration, growth of cracks in the shaft forging, and large blade vibration are some examples of degradation that remains unmonitored in most commercial plants today. In many cases, the sensing and subsequent trending of high-quality vibration data obtained directly from the shaft surface can be the basis for a decision to continue to operate versus inspect or repair. Detection of small changes in torsional and lateral vibration mode properties can be sensed at a single shaft location and trended using techniques such as Advanced Pattern Recognition to reveal the very early signs of rotor distress. Contemporary barriers to widespread application of wireless shaft vibration measurements for health monitoring were studied and addressed in the development of the Turbine Dynamics Monitoring System (TDMS). The resulting design evolved around the industry need for low sensor maintenance, high reliability, ease of installation, and high data quality to enable early detection of critical component changes. These improvements capitalized on advances in strain gage and accelerometer technology, micro-telemetry, radio-frequency power systems, and advanced adhesives for installation. The new system has been successfully applied in the field on large steam turbine-generators to detect grid-induced torsional vibration. The paper will describe background of turbine-generator torsional vibration as well as the technical features of this advanced telemetry application with examples of field data.
机译:发电应用中使用的涡轮发电机轴系统暴露于退化机制,如果在损坏累积之前未发现,则可能导致严重后果的故障。网格引起的扭转振动,轴锻件中裂纹的扩展以及大叶片振动是当今大多数商用工厂中仍未监控到的退化的一些例子。在许多情况下,直接从轴表面获得的高质量振动数据的感测和随后的趋势可能是决定继续操作还是检查还是修理的基础。可以在单个轴位置上检测到扭转和横向振动模式特性的细微变化,并使用诸如“高级模式识别”之类的技术来趋势化,以揭示转子故障的早期迹象。在涡轮动态监测系统(TDMS)的开发中,研究并解决了将无线轴振动测量技术广泛应用于健康监测的当代障碍。最终的设计是围绕行业需求而发展的,该行业需要较低的传感器维护,较高的可靠性,易于安装和较高的数据质量,以便能够及早发现关键部件的变化。这些改进利用了应变计和加速度计技术,微遥测技术,射频电源系统以及用于安装的高级粘合剂的进步。新系统已在大型蒸汽轮发电机上成功应用于现场,以检测电网引起的扭转振动。本文将以现场数据为例,介绍涡轮发电机扭转振动的背景以及这种先进遥测应用的技术特征。

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