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Research on and Development of Steam Pipeline Creep Real-time Monitoring System Based on Virtual Instrument Technology

机译:基于虚拟仪器技术的蒸汽管道蠕变实时监测系统的研究与开发

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With the long influence of high temperature and stress, high temperature & high pressure steam pipeline of a thermal power plant will bring about creep damage or even tube explosion, which heavily threaten its safe operation. Therefore, the timely and accurate measurement of the pipeline creep is vital to the correct estimation of pipeline residual life and the prevention of various security accidents resulted from the pipeline high temperature creep. This paper put forward a new measurement method, which advanced virtual instrument and data base technology are introduced, and the non-contact precise electronic eddy sensor, converts the measurement of pipeline creep into high precise micro-displacement under the high temperature circumstance, and so completes the non-contact nondestructive examination. The test result is filed in history data base; an analysis and estimation are made on the pipeline residual life and a real-time supervisory information system is run by the LAN interface in Plant Level. It is of great practical exploration with the application of the virtual instrument technology to the Plant comprehensive supervisory information system, which has a good popularized future.
机译:随着高温和应力的影响,热电厂的高温和高压蒸汽管道将带来蠕变损坏或甚至管爆炸,这严重威胁其安全操作。因此,对管道蠕变的及时和准确测量对于管道剩余寿命的正确估计至关重要,并且防止各种安全事故由管道高温蠕变产生。本文提出了一种新的测量方法,介绍了先进的虚拟仪器和数据库技术,而非接触精确的电子涡流传感器,将管道蠕变的测量转换为高温环境下的高精度微位移,等等完成非联系无损检查。测试结果在历史数据库中提交;对流水线剩余寿命进行分析和估计,并且实时监控信息系统由植物级别的LAN接口运行。通过将虚拟仪器技术应用于植物综合监控信息系统,它具有很大的实践探索,具有良好的推广未来。

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