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Time-Frequency Methods for Structural Health Monitoring of Deepwater Risers Subjected to Vortex Induced Vibrations

机译:涡激振动引起的深水冒口结构健康监测的时频方法

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摘要

In this paper, an approach based on a new damage index-Distributed Force Change(WDFC), for monitoring the structural health of risers used for production in deep-water floating platforms, is presented. Experiments of a scaled pipe are carried out to validate the vibration based damage identification method. The influences of multiple cracks in the WDFC damage index are studied. Futhermore,this paper demonstrates the effectiveness of wave propagation based structural health monitoring (SHM) strategies within the pipe model. This is realized based on the results of numerical investigation obtained by the use of Finite Element Method(FEM) together with application of Time-of-Flight(FoT) damage identification method in which the damage severity is indicated by Root Mean Square(RMS) of the damage-reflected wave. The influence of crack(s) in the riser/pipe on the wave propagation are studied. The results from the experiments and numerical analysis indicate that both the two damage identification methods can provide information about the estimated crack location(s) and the possible extent of crack. Hence the two methods are suitable for globally and locally monitoring the structural health of deepwater risers respectively.
机译:本文提出了一种基于新的损伤指数-分布式力变化(WDFC)的方法,用于监控用于深水漂浮平台的立管的结构健康状况。进行了按比例缩放的管道的实验,以验证基于振动的损伤识别方法。研究了多个裂纹对WDFC损伤指数的影响。此外,本文演示了管道模型中基于波传播的结构健康监测(SHM)策略的有效性。这是基于通过使用有限元方法(FEM)进行的数值研究结果以及飞行时间(FoT)损伤识别方法的应用而实现的,其中损伤严重性由均方根(RMS)表示损坏的反射波。研究了立管/管道中的裂纹对波传播的影响。实验和数值分析的结果表明,两种损伤识别方法都可以提供有关估计的裂纹位置和可能的裂纹范围的信息。因此,这两种方法分别适用于全球和局部监测深水立管的结构健康。

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