A stiffness-based method for damage detection in 3-D offshore jacket platforms using inverse vibration problem (IVP) technique

IF 1.5 4区 工程技术 Q3 ENGINEERING, MARINE
M. R. Tabeshpour, M. Abbaspour, A. Ahmadi
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引用次数: 0

Abstract

More attention has been paid to Damage detection in offshore jacket platforms (OJP) because of repair and maintenance issues. Damage detection using modal data from a few sensors is one of the main important subjects that researchers have paid attention to it. The inverse Vibration Problem (IVP) technique does not need modal data in all nodes of OJP but first modal data in different levels of platform and principal degrees of freedom could be sufficient. Since the complex structural model becomes a reduced shear building by implementing this technique, there must be a reduced equivalent stiffness matrix for the healthy structure to make the comparison for damage detection. This paper deals with the formulation and implementation of IVP technique in corporation of the proper method for calculation of equivalent level stiffness. The proper method was selected based on a comparison of modal data obtained from full and reduced models using comparison tools like the MAC coefficient. Also, damage detection in a typical OJP model under a specific damage scenario was investigated numerically and experimentally and the results show the reliable performance of the methodology. A damage detection flowchart is suggested to detect damage location properly. It is developed mainly based on geometrical couplings in OJP structure in damaged conditions and the method leads to damage location exactly and maximum error in damage prediction is obtained at about 12%.
利用逆振动问题(IVP)技术,提出了一种基于刚度的三维海上导管架平台损伤检测方法
由于海上导管架平台的维修和维护问题,对导管架平台的损伤检测越来越受到重视。利用少数传感器的模态数据进行损伤检测是目前国内外研究的重要课题之一。反振动问题(IVP)技术不需要OJP所有节点的模态数据,但不同层次平台和主自由度的第一模态数据就足够了。由于采用该技术后的复杂结构模型变成了减剪结构,因此必须有一个健康结构的减剪等效刚度矩阵来进行损伤检测的比较。本文讨论了IVP技术在计算等效水平刚度的适当方法中的制定和实现。利用MAC系数等比较工具对全模型和约简模型的模态数据进行比较,选择合适的方法。通过数值和实验研究了典型OJP模型在特定损伤场景下的损伤检测,结果表明了该方法的可靠性。提出了一种损伤检测流程图,以便准确定位损伤位置。该方法主要基于损伤状态下OJP结构的几何耦合,能够准确定位损伤,损伤预测的最大误差约为12%。
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来源期刊
CiteScore
3.90
自引率
11.10%
发文量
77
审稿时长
>12 weeks
期刊介绍: The Journal of Engineering for the Maritime Environment is concerned with the design, production and operation of engineering artefacts for the maritime environment. The journal straddles the traditional boundaries of naval architecture, marine engineering, offshore/ocean engineering, coastal engineering and port engineering.
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