College of Civil Engineering & Architecture, Zhejiang University, Hangzhou 310058, China.
Department of Mechanical Engineering, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia.
Sensors (Basel). 2021 May 10;21(9):3294. doi: 10.3390/s21093294.
Several approaches have been used in the past to predict fatigue crack growth rates in T-joints of the offshore structures, but there are relatively few cases of applying structural health monitoring during the non-destructive testing of jacket platforms. This paper presents an experimental method based on the sensing of the piezoelectric sensors and finite element analysis method for studying the fatigue cracks in the offshore steel jacket structure. Three types of joints are selected in the current research work: T-type plate, T-type tube-plate, and T-type tube joints. The finite element analysis model established in the current study computes and analyzes the high stress and high strain regions in the T-type joints. The fatigue damage in the T-type joints was successfully detected by utilizing both the finite element analysis and experimental methods. The results showed that fatigue cracks of the three types of joints are prone to appear at the weld toe and spread in the welding direction. The fatigue damage location of T-type plate and T-type tube-plate joints is more concentrated in the upper weld toe area, and the fatigue damage location of the T-type tube joint is closer to the lower weld toe area.
过去已经采用了几种方法来预测海洋结构中 T 型接头的疲劳裂纹扩展速率,但在导管架平台的无损检测中应用结构健康监测的情况相对较少。本文提出了一种基于压电传感器传感和有限元分析方法的实验方法,用于研究海洋钢套结构中的疲劳裂纹。在当前的研究工作中选择了三种类型的接头:T 型板、T 型管板和 T 型管接头。当前研究中建立的有限元分析模型计算和分析了 T 型接头中的高应力和高应变区域。通过利用有限元分析和实验方法成功检测到 T 型接头的疲劳损伤。结果表明,三种类型的接头的疲劳裂纹都容易出现在焊缝趾部并沿焊接方向扩展。T 型板和 T 型管板接头的疲劳损伤位置更集中在上焊缝趾区域,而 T 型管接头的疲劳损伤位置更靠近下焊缝趾区域。