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Collapse Analysis of Imperfect Subsea Pipelines Based on 2D High-Order Nonlinear Model 被引量:3
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作者 余建星 李智博 +1 位作者 杨源 孙震洲 《Transactions of Tianjin University》 EI CAS 2014年第3期157-162,共6页
To study the collapse of imperfect subsea pipelinos, a 2D high-order nonlinear model is developed. In this model, the large deformation of the pipes is considered by raiaining the high-order nonlinear terms of strain.... To study the collapse of imperfect subsea pipelinos, a 2D high-order nonlinear model is developed. In this model, the large deformation of the pipes is considered by raiaining the high-order nonlinear terms of strain. In addi-tion, the J2 plastic flow theory is adopted to describe the elasioplastic constitutive relations of material. The quasi-static process of collapse is analyzed by the increment method. For each load step, the equations based on the principle of virtual work are presented and solved by the discrete Newton's method. Furthermore, finite element simulations and full-scale experiments were preformed to validate the results of the model. Research on the major influencing factors of collapse pressure, including D/t, material type and initial ovality, is also presented. 展开更多
关键词 IMPERFECTION subsea pipelines COLLAPSE NONLINEARITY initial ovality
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A Comparative Study on the Post-Buckling Behavior of Reinforced Thermoplastic Pipes(RTPs)Under External Pressure Considering Progressive Failure 被引量:2
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作者 DING Xin-dong WANG Shu-qing +1 位作者 LIU Wen-cheng YE Xiao-han 《China Ocean Engineering》 SCIE EI CSCD 2024年第2期233-246,共14页
The collapse pressure is a key parameter when RTPs are applied in harsh deep-water environments.To investigate the collapse of RTPs,numerical simulations and hydrostatic pressure tests are conducted.For the numerical ... The collapse pressure is a key parameter when RTPs are applied in harsh deep-water environments.To investigate the collapse of RTPs,numerical simulations and hydrostatic pressure tests are conducted.For the numerical simulations,the eigenvalue analysis and Riks analysis are combined,in which the Hashin failure criterion and fracture energy stiffness degradation model are used to simulate the progressive failure of composites,and the“infinite”boundary conditions are applied to eliminate the boundary effects.As for the hydrostatic pressure tests,RTP specimens were placed in a hydrostatic chamber after filled with water.It has been observed that the cross-section of the middle part collapses when it reaches the maximum pressure.The collapse pressure obtained from the numerical simulations agrees well with that in the experiment.Meanwhile,the applicability of NASA SP-8007 formula on the collapse pressure prediction was also discussed.It has a relatively greater difference because of the ignorance of the progressive failure of composites.For the parametric study,it is found that RTPs have much higher first-ply-failure pressure when the winding angles are between 50°and 70°.Besides,the effect of debonding and initial ovality,and the contribution of the liner and coating are also discussed. 展开更多
关键词 reinforced thermoplastic pipes post-buckling behavior progressive failure of composites DEBONDING initial ovality
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Study on First-Yield Collapse of Submarine Pipelines
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作者 Zhang, W Li, DX 《China Ocean Engineering》 SCIE EI 1997年第4期449-456,共8页
The first-yield collapse of submarine pipelines with an initial out-of-roundness imperfection under combined bending and external pressure load is formulated by means of the Von. Mises yield criterion. The formula red... The first-yield collapse of submarine pipelines with an initial out-of-roundness imperfection under combined bending and external pressure load is formulated by means of the Von. Mises yield criterion. The formula reduces to Timoshenko and Gere's expression in the case of external pressure load alone. The influence curves of various parameters on the yield strength are presented, the collapse of submarine pipelines in a deep water region is numerically predicted, and the effect of pre-yield nonlinear bending on the yield strength is also examined. 展开更多
关键词 submarine pipeline yield strength initial ovality
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