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Monitoring and control of electric power generation using fiber optics for physical parameter sensing

机译:使用光纤进行物理参数传感的发电监控

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Abstract: This paper is an `extended abstract' for a more complete presentation at the SPIE Conference on Nondestructive Evaluation of Aging Infrastructure, scheduled for June 6 - 8, 1995 Oakland, California. The physical and economic climate of electric power generation, particularly for aging fossil-fuel plants, is reviewed. This calls for reliable sensing and monitoring/control systems to extend equipment life and preclude major breakdowns. An instrumentation system requirement is outlined for a cold reheat header located in the high temperature and contaminated/corrosive environment of the fluc-gas stream of a 480 MW fossil-fuel boiler. The development and installation of what is believed to be the world's first distributed fiber optic temperature and strain/displacement monitoring system, operating at 1100 degrees F, is reviewed. The nature of initial data acquisition and planned future system operation for improved plant health are presented. The installation of a discrete fiber optic system for main steam lines is also presented. Drawing on the technology and experience with the aforementioned development and installation, the planned function of the system is to provide data on thermally induced stresses (creep) for strain reduction by operational control. !0
机译:摘要:本文是“扩展摘要”,用于在1995年6月6日至8日于加利福尼亚州奥克兰举行的SPIE老化基础设施的非破坏性评估会议上进行更完整的介绍。审查了发电的物理和经济气候,特别是对于老化的化石燃料电厂。这要求可靠的传感和监视/控制系统,以延长设备寿命并防止重大故障。概述了对480 MW化石燃料锅炉烟气的高温和高污染/腐蚀性环境中的冷再热集管的仪表系统要求。审查了被认为是世界上第一个在1100华氏度下运行的分布式光纤温度和应变/位移监测系统的开发和安装。介绍了用于改善工厂健康状况的初始数据获取和计划的未来系统操作的性质。还介绍了用于主蒸汽管线的分立光纤系统的安装。利用上述开发和安装的技术和经验,系统的计划功能是提供有关热诱导应力(蠕变)的数据,以通过操作控制来降低应变。 !0

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