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Experimental modelling of a top-tensioned riser for vibration-based damage detection

机译:基于振动损伤检测的顶张力提升机的实验建模

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摘要

Damage incidents in subsea risers may lead to catastrophic economic, environmental and human safety consequences. Therefore, early detection of damage is of paramount importance. Vibration-based damage detection methods have been extensively studied in the past for damage detection in a vast variety of structural types, however, their application to risers has hardly been explored to date. In the limited existing literature of vibration-based damage detection in risers, the proposed methods have mostly been verified by numerical studies or by experimental models which lacked realistic representations of ambient excitations and similarity of the model to a full-scale structure. This paper presents, for the first time, experimental modelling of a top-tensioned riser at a laboratory scale for vibration-based damage detection studies, in which the similarity of the experimental model to a full-scale structure, the multifaceted effects of damage and the dynamic ambience are explicitly addressed. An experimental riser model is built and subjected to random wave loading in a flume according to the JONSWAP spectrum to simulate the ambient excitations realistically. The experimental model consists of a tensioned rod made of acetal plastic and several small lumped steel masses attached to the rod such that they reduce the natural frequencies of the model to the range of wave frequencies that can be generated in the flume. An analysis is conducted to account for the similarity between the experimental model and a full-scale structure with the priority given to the modal characteristics of the structures. Corrosion is considered as the cause of damage and it is simulated non-destructively on the experimental model by partial removal of the attached lumped mass at the assumed damage location and reduction of applied tension load. The amount of removed mass and reduced tension load are calculated such that the simulated damage on the experimental model is equivalent to an actual cross-sectional area loss due to corrosion damage in the full-scale structure. An application of a vibration-based damage detection method is demonstrated using experimental data obtained for several different damage scenarios. An auto-regressive (AR) model is fitted to the acceleration response of the riser and coefficients of the AR model are used as the damage sensitive features (DSFs). Damage detection is achieved by conducting outlier analysis on the DSFs.
机译:海底立管的损害事件可能导致灾难性的经济,环境和人性安全后果。因此,早期发现损害是至关重要的。过去的振动损伤检测方法已经广泛研究了过去的损伤检测,但是,它们对立管的应用迄今为止几乎没有探索。在立管中的基于振动损伤检测的有限文献中,所提出的方法主要通过数值研究或通过实验模型验证,这些模型缺乏对全规模结构的环境激励和环境的相似性的现实表现形式。本文首次呈现了在实验室规模的基于振动损伤检测研究的实验室规模的实验建模,其中实验模型与满量程结构的相似性,损坏的多方面的影响明确解决动态氛围。根据Jonswap谱构建并对水槽中的随机波加载进行实验式提升性模型,以便实际地模拟环境激励。实验模型包括由缩醛塑料制成的张紧杆和附接到杆上的几个小块钢质量,使得它们将模型的自然频率降低到可以在水槽中产生的波频范围。进行分析以考虑实验模型与全尺度结构之间的相似性,优先考虑结构的模态特性。腐蚀被认为是损坏的原因,并且通过部分去除在假定的损坏位置和施加的张力载荷的减少时部分去除附着的块状质量来模拟实验模型。计算出消除的质量和减小的张力载荷,使得实验模型的模拟损坏相当于由于满量程结构腐蚀损坏的实际横截面积损失。使用针对几种不同损伤情景的实验数据来证明基于振动的损伤检测方法的应用。自动回归(AR)模型安装在提升管的加速度响应,并且AR模型的系数用作损伤敏感特征(DSF)。通过对DSF的分析进行差异分析来实现损坏检测。

著录项

  • 来源
    《Engineering Structures》 |2020年第15期|111139.1-111139.11|共11页
  • 作者单位

    School of Engineering University of Aberdeen Aberdeen AB24 3UE United Kingdom Centre for Infrastructural Monitoring and Protection School of Civil and Mechanical Engineering Curtin University Kent Street Bentley WA 6102 Australia;

    School of Engineering University of Aberdeen Aberdeen AB24 3UE United Kingdom;

    School of Engineering University of Aberdeen Aberdeen AB24 3UE United Kingdom;

    Centre for Applied Dynamics Research School of Engineering University of Aberdeen Aberdeen AB24 3UE United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Damage detection; Top tensioned riser; Experimental modelling; Similarity analysis;

    机译:损伤检测;顶级张紧立管;实验建模;相似性分析;

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