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OPERATION UNDER ALARM CONDITIONS FOR GAS TURBINE ENGINE BEARINGS

机译:燃气涡轮发动机轴承报警条件下的操作

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In this paper, an evaluation of the gas turbine bearing situation near and under temperature alarm is presented. A fuzzy synthetic decision-making system is used as a predictive maintenance procedure to make diagnosis by ferrographic analysis for real data taken from a turbine bearing. Analyzing the wear debris, the bearing failure start is detected which gives an accurate view about bearing failure mode, however, using the temperature and vibration monitoring for bearing failure detection gives alarms at late stages of bearing failure. It is known that there is a time interval between bearing failure start and shutdown action due to temperature rise. The developed technique detects the start of bearing failure, so, the bearing can operate under known temperature alarm condition. As a result of the developed technique, the bearing life is divided into three areas, normal normal, caution , and danger danger. Through the caution interval a suitable maintenance plan is done to avoid the emergency stop during dangerous zone. Hence the emergency stop due to temperature shutdown signal is changed to plan stop, which reduces the emergency cost and shutdown time and consequently increases the turbine availability.
机译:本文介绍了对温度报警附近和下方的燃气轮机轴承情况的评估。模糊的合成决策系统被用作预测性维护程序,以通过涡轮机轴承所取的真实数据进行诊断。分析磨损碎片,检测轴承失效启动,这为轴承故障模式提供了准确的轴承故障模式的视图,然而,使用轴承故障检测的温度和振动监测在轴承故障的后期发出警报。众所周知,由于温度升高,轴承故障启动和关闭动作之间存在时间间隔。开发技术检测轴承故障的起点,因此,轴承可以在已知的温度报警条件下运行。由于开发的技术,轴承寿命分为三个区域,正常正常,警告和危险危险。通过小心间隔,完成合适的维护计划,以避免在危险区域期间的紧急停止。因此,由于温度关闭信号引起的紧急停止变为计划停止,这减少了紧急成本和关闭时间,从而提高了涡轮机可用性。

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