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Collapse analysis of steel jacket structures for offshore oil exploitation

机译:海上石油开采用钢套结构的倒塌分析

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摘要

This work describes the formulation of finite-element based numerical methods for global nonlinear collapse analyses of three-dimensional steel framed structures. Particular emphasis is dedicated to the reassessment and determination of residual strength of steel jackets that support offshore oil exploitation platforms. Two main aspects are considered: (1) the formulation for a three-dimensional geometric and material nonlinear frame element, and (2) the implementation of specialized techniques for the solution of the nonlinear problem. The formulation of the element combines a co-rotational approach to represent geometric nonlinearities, providing an accurate treatment of finite rotations, with the plastic hinge approach to represent material nonlinearities. The stiffness reduction due to yielding is performed through a smooth degradation, following a parabolic function. Effects of strain hardening, geometric imperfections and residual stresses are modeled in an efficient manner. In order to determine the full nonlinear equilibrium path and allow the correct determination of the collapse load, the solution strategies consider specialized "continuation" techniques such as the Arc-Length and the Generalized Displacement Control methods. Case studies are presented in order to demonstrate the accuracy, efficiency, and suitability of the implemented methods and techniques.
机译:这项工作描述了基于有限元的数值方法,用于三维钢框架结构的整体非线性倒塌分析。特别着重于重新评估和确定支撑海上石油开采平台的钢套的残余强度。考虑两个主要方面:(1)三维几何和材料非线性框架元素的公式化;(2)解决非线性问题的专用技术的实现。元素的公式结合了表示几何非线性的同向旋转方法(提供有限旋转的精确处理)和表示材料非线性的塑料铰链方法。由于屈服而导致的刚度降低是通过遵循抛物线函数的平滑退化来实现的。以有效的方式对应变硬化,几何缺陷和残余应力的影响进行建模。为了确定完整的非线性平衡路径并允许正确确定坍塌荷载,解决方案策略考虑了专门的“连续”技术,例如弧长和广义位移控制方法。案例研究旨在证明所实施方法和技术的准确性,效率和适用性。

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