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A novel hybrid testing approach for piping systems of industrial plants

机译:工业厂房管道系统的新型混合测试方法

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摘要

The need for assessing dynamic response of typical industrial piping systems subjected to seismic loading motivated the authors to apply model reduction techniques to experimental dynamic substructuring. Initially, a better insight into the dynamic response of the emulated system was provided by means of the principal component analysis. The clear understanding of reduction basis requirements paved the way for the implementation of a number of model reduction techniques aimed at extending the applicability range of the hybrid testing technique beyond its traditional scope. Therefore, several hybrid simulations were performed on a typical full-scale industrial piping system endowed with a number of critical components, like elbows, Tee joints and bolted flange joints, ranging from operational to collapse limit states. Then, the favourable performance of the L-Stable Real-Time compatible time integrator and an effective delay compensation method were also checked throughout the testing campaign. Finally, several aspects of the piping performance were commented and conclusions drawn.
机译:评估典型工业管道系统承受地震载荷的动力响应的需求促使作者将模型简化技术应用于实验动力子结构。最初,通过主成分分析可以更好地了解仿真系统的动态响应。对缩减基础要求的清晰理解为实现许多模型缩减技术铺平了道路,这些技术旨在将混合测试技术的适用范围扩展到其传统范围之外。因此,在典型的大型工业管道系统上进行了几种混合仿真,这些系统配备了许多关键组件,例如弯头,T形接头和螺栓连接的法兰接头,其范围从运行状态到崩溃极限状态。然后,在整个测试过程中,还检查了L-Stable Real-Time兼容时间积分器的良好性能和有效的延迟补偿方法。最后,对管道性能的几个方面进行了评论并得出结论。

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