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Improvement of a vibration-based damage detection approach for health monitoring of bolted flange joints in pipelines

机译:改进基于振动的损伤检测方法,以监测管道中螺栓法兰接头的健康状况

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Early detection of bolt loosening is a major concern in the oil and gas industry. In this study, a vibration-based health monitoring strategy has been developed for detecting the loosening of bolts in a pipeline's bolted flange joint. Both numerical and experimental studies are conducted to verify the integrity of our implementation as well as of an enhancement developed along with it. Several damage scenarios are simulated by the loosening of the bolts through varying the applied torque on each bolt. An electric impact hammer is used to vibrate (excite) the system in a consistent manner. The induced vibration signals are collected via piezoceramic sensors bonded onto the pipe and flange. These signals are transferred remotely by a wireless data acquisition module and then processed with a code developed in-house in the MATLAB environment. After normalization and filtering of the signals, the empirical mode decomposition is applied to establish an effective energy-based damage index. The assessment of the damage indices thus obtained for the various scenarios verifies the integrity of the proposed methodology for identifying the damage and its progression in bolted joints as well as the major enhancements applied onto the methodology.
机译:及早发现螺栓松动是石油和天然气工业的主要关注点。在这项研究中,已经开发了一种基于振动的健康监测策略,用于检测管道的螺栓法兰接头中的螺栓是否松动。进行了数值和实验研究,以验证我们的实施以及与之一起开发的增强功能的完整性。通过改变每个螺栓上的施加扭矩来松开螺栓,可以模拟几种损坏情况。电锤用于以一致的方式振动(激励)系统。感应的振动信号通过结合在管道和法兰上的压电陶瓷传感器收集。这些信号通过无线数据采集模块进行远程传输,然后在MATLAB环境中使用内部开发的代码进行处理。在对信号进行归一化和滤波之后,经验模态分解被用于建立有效的基于能量的损伤指数。对各种情况下由此获得的损坏指数进行评估,验证了所提出方法的完整性,该方法可用于识别螺栓连接处的损坏及其进展以及该方法上的主要改进。

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