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Non-destructive testing and assessment of dynamic incompatibility between third-party piping and drain valve systems: An industrial case study

机译:第三方管道与排水阀系统之间动态不兼容性的无损检测和评估:工业案例研究

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摘要

This paper presents the outcome of an industrial case study that involved condition monitoring of piping system that showed signs of excess fatigue due to flow-induced vibration. Due to operational requirements, a novel non-destructive assessment stratagem was adopted using different vibration analysis techniques - such as experimental modal analysis and operating deflection shapes - and complemented by visual inspection. Modal analysis carried out near a drain valve showed a dynamic weakness problem (several high-frequency flow-induced vibration frequency peaks), hence condition-based monitoring was used. This could easily be linked to design problem associated with the dynamic incompatibility due to dissimilar stiffness between two third-party supplied pipe and valve systems. It was concluded that this is the main cause for these problem types especially when systems are supplied by third parties, but assembled locally, a major cause of dynamic incompatibility. It is the local assembler's responsibility to develop skills and expertise needed to sustain the operation of these plants. This paper shows the technique used as result of one such initiative. Since high amplitude, low-frequency displacement can cause low cycle fatigue, attention must be paid to ensure flow remains as steady state as possible. The ability to assess the level of design incompatibility and the level of modification required using non-destructive testing is vital if these systems are to work continuously. © 2014 Taylor & Francis.
机译:本文介绍了一个工业案例研究的结果,该案例涉及管道系统的状态监测,该监测显示了由于流动引起的振动而导致过度疲劳的迹象。由于操作要求,采用了不同的振动分析技术(例如实验模态分析和操作变形形状)采用了一种新颖的无损评估策略,并通过目视检查进行了补充。在排水阀附近进行的模态分析显示出动态缺陷问题(几个高频流动引起的振动频率峰值),因此使用了基于状态的监视。由于两个第三方供应的管道和阀门系统之间的刚度不同,这很容易与动态不兼容相关的设计问题联系在一起。结论是,这是导致这些问题类型的主要原因,特别是当系统由第​​三方提供但在本地组装时,这是动态不兼容的主要原因。当地组装商的责任是发展维持这些工厂运转所需的技能和专门知识。本文展示了这种主动性的结果所使用的技术。由于高振幅,低频位移会导致低周疲劳,因此必须注意确保流量保持尽可能稳定的状态。如果这些系统要连续工作,那么评估设计不兼容级别和使用非破坏性测试所需的修改级别的能力至关重要。 ©2014泰勒和弗朗西斯。

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