Structural Analysis of Large Diameter Cast Iron Pipes under Cyclic Loading and Fatigue Failure

被引:0
|
作者
Hajali, Masood [1 ]
McNealy, Ashan [1 ]
Efaz, Ikram [1 ]
机构
[1] Xylem Inc, Columbia, MD 20785 USA
来源
PIPELINES 2023: CONDITION ASSESSMENT, UTILITY ENGINEERING, SURVEYING, AND MULTIDISCIPLINE | 2023年
关键词
Cast iron pipelines; crack growth; fatigue failure; internal fatigue loading;
D O I
暂无
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The majority of cast iron pipelines were installed in the United States in the early to mid-20th century. Most of these pipes are in a sustainable working condition; however, any failure of these pipelines could be catastrophic due to the social, political, and environmental impacts of the failure. Utility engineers have reported failures on large diameter cast iron pipes that occurred suddenly and without warning, with no signs of prior damage, cracks, leaks, and no visual evidence of corrosion on the fracture surfaces. To facilitate better decision making for capital expenditures and to address the risk associated with these assets, the fatigue failure mechanisms of cast iron pipe must be understood. In addition, for planning and capital budgeting, it is important to determine the current condition of a deteriorated pipeline and its risk of failure due to cyclic loading. In this study, structural analysis of fatigue failures for buried cast iron pipes is performed. This paper explores the level of stress on corroded pits and crack growth when subjected to internal fatigue loading such as operating pressure variations and transient pressure events. Computational modeling is utilized to inform utility owners that there is a threshold for size of initial crack and number of cycles that significantly change level of stress for cast iron pipes. It is very important to know that number of cycles before any failure happens. This will provide decision makers and utility owners a tool to enhance their asset management strategy based on inspection results combined with advanced computational fatigue modeling.
引用
收藏
页码:97 / 106
页数:10
相关论文
共 50 条
  • [41] Structural Probabilistic Modeling of Fatigue Fracture for Piezoceramic Materials Under Cyclic Loading
    Babich, D.
    Bezverkhyi, O.
    Dorodnykh, T.
    DYNAMICAL SYSTEMS: MODELLING, 2016, 181 : 11 - 26
  • [42] Crack propagation in pipes under cyclic axial loading
    Carpinteri, A
    Brighenti, R
    Spagnoli, A
    COMPUTATIONAL METHODS AND TESTING FOR ENGINEERING INTEGRITY, 1996, : 3 - 10
  • [43] Numerical modelling of large diameter steel piles under monotonic and cyclic horizontal loading
    Achmus, M.
    Abdel-Rahman, K.
    Kuo, Y-S.
    NUMERICAL MODELS IN GEOMECHANICS: NUMOG X, 2007, : 453 - 459
  • [44] Fatigue behaviour of piezoelectric ceramic stack under large cyclic dynamic loading
    Ding, Guangya
    Xing, Zijun
    Chen, Naiyu
    Wang, Jun
    Shi, Li
    JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES, 2023, 34 (15) : 1809 - 1824
  • [45] Simulations of cyclic plasticity and fatigue behavior of structural steels under multiaxial loading
    Li, B.
    Reis, L.
    de Freitas, M.
    ADVANCED MATERIALS FORUM III, PTS 1 AND 2, 2006, 514-516 : 1414 - 1418
  • [46] Accumulated response of offshore large-diameter monopile under lateral cyclic loading
    Luo Ru-ping
    Li Wei-chao
    Yang Min
    ROCK AND SOIL MECHANICS, 2016, 37 : 607 - 612
  • [47] Stiffness degradation of GFRP pipes under fatigue loading
    Chen, Jianzhong
    Zhen, Yuqing
    Lou, Yaosheng
    Lv, Yong
    MATERIALS TESTING, 2019, 61 (05) : 435 - 440
  • [48] Performance Assessment and Failure Prediction of Corroded Cast Iron Pipes
    Rajeev, P.
    Robert, D. J.
    GEOTECHNICAL ENGINEERING, 2019, 50 (02): : 21 - 27
  • [49] Numerical analysis of quasi-steady flow characteristics in large diameter pipes with low liquid loading under high pressure
    Guan, Xiaorui
    Zhao, Yingliang
    Wang, Jianjun
    Jin, Youhai
    Zhang, Dalei
    JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING, 2015, 26 : 907 - 920
  • [50] Analysis of progressive interface failure under cyclic shear loading
    Shen, X.
    Mroz, Z.
    Advances in Structural Engineering, 2000, 3 (04) : 279 - 290