首页> 外文会议>Meeting of Society for Machinery Failure Prevention Technology >COMPREHENSIVE CONDITION MONITORING ANALYSIS FOR POWER PLANT BOILER CIRCULATOR PUMPS
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COMPREHENSIVE CONDITION MONITORING ANALYSIS FOR POWER PLANT BOILER CIRCULATOR PUMPS

机译:电厂锅炉循环泵综合条件监测分析

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The boiler circulator pump (BCP) is an integral part of the power plant operations in both conventional (coal/gas fired steam plant) or nuclear plants. The BCP moves super heated water under pressure to the steam generator. These pumps are glandless, megawatt induction power pumps. If the pump fails, the power plant must be removed from service to replace the pump. In many applications, these pumps serve power plant providing the base load power requirements of a community. The failure of a pump requires the operator to buy power from other generating plants at much higher rates. Glandless BCP pose a difficult problem for automated analysis, as there is no way to introduce a tachometer to measure pump speed. Further, while a relatively simple machine, the failure modes include: out of balance/bearing wear that is best measured by vibration, and rotor bar/opens/shorts/eccentricity that is best measured by current. Further, these machines are asynchronous and typically very well balanced, so that is difficult to determine shaft RPM from vibration. This paper discusses the analysis of BCP using both vibration and current analysis methods and the processing needed to automate fault detection, diagnostics, and prognostics.
机译:锅炉循环泵(BCP)是常规(煤/燃气蒸汽蒸汽厂)或核植物中电厂操作的一体部分。 BCP将超级加热水在压力下移动到蒸汽发生器。这些泵是无柔性的兆瓦的感应电力泵。如果泵发生故障,则必须从服务中取出电厂以更换泵。在许多应用中,这些泵提供了发电厂,提供了社区的基本负载功率要求。泵的故障要求操作员以更高的速率从其他发电厂购买电力。 Glandless BCP对自动分析构成了一个难题,因为没有办法引入转速表来测量泵速度。此外,在相对简单的机器的同时,失效模式包括:超出通过振动测量的平衡/轴承磨损,以及通过电流最佳测量的转子杆/短路/偏心率。此外,这些机器是异步的,通常非常平衡,因此难以从振动中确定轴RPM。本文讨论了使用振动和电流分析方法和自动化故障检测,诊断和预测所需的处理对BCP的分析。

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