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A probabilistic fracture mechanics model including 3D ductile tearing of bi-axially loaded pipes with surface cracks

机译:包含表面裂纹的双轴加载管道的3D韧性断裂的概率断裂力学模型

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摘要

This paper presents a probabilistic fracture mechanics model established from three-dimensional FEM analyses of surface cracked pipes subjected to tension load in combination with internal pressure. The models are particularly interesting for offshore pipelines under operational conditions or during laying, where inelastic deformations may occur. In the numerical models, the plastic deformations, including ductile tearing effects, are accounted for by use of the Gurson-Tvergaard-Needleman model. This model is calibrated to represent a typical X65 pipeline steel behaviour under ductile crack growth and collapse. Several parameters are taken into account, such as crack depth, crack length and material hardening. Another important topic is the examination of the influence of bi-axial loading due to internal pressure on capacity. From the results of the deterministic analyses a probabilistic fracture mechanics model is established using the response surface methodology. Two failure criteria are examined to represent the structural capacity. Based on the established model, we illustrate the methodology by examples employing the two different failure criteria solved with first and second order reliability methods.
机译:本文提出了一种基于表面裂纹管的三维有限元分析建立的概率断裂力学模型。该模型对于操作条件下或铺设过程中可能发生非弹性变形的海上管道特别有用。在数值模型中,塑性变形(包括韧性撕裂效应)是通过使用Gurson-Tvergaard-Needleman模型解决的。对该模型进行了校准,以代表在韧性裂纹扩展和坍塌下典型的X65管线钢性能。考虑了几个参数,例如裂纹深度,裂纹长度和材料硬化。另一个重要的主题是检查由于内部压力引起的双向载荷对容量的影响。根据确定性分析的结果,使用响应面方法建立了概率断裂力学模型。检查了两个破坏标准以代表结构能力。在建立的模型的基础上,我们通过示例说明了采用两种不同的失效准则(通过一阶和二阶可靠性方法解决)的方法。

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