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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >Static analysis of offshore risers with a geometrically-exact 3D beam model subjected to unilateral contact
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Static analysis of offshore risers with a geometrically-exact 3D beam model subjected to unilateral contact

机译:使用单侧接触的几何精确3D梁模型对海上立管进行静态分析

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摘要

In offshore applications there are elements that can be modeled as long beams, such as umbilical cables, flexible and rigid pipes and hoses, immersed in the seawater, suspended from the floating unit to the seabed. The suspended part of these elements is named “riser” and is subjected to the ocean environment loads, such as waves and sea current. This work presents a structural geometrically-exact 3D beam model, discretized using the finite element method for riser modeling. An updated Lagrangian framework for the rotation parameterization has been used for the description of the exact kinematics. The goal is to perform a complete static analysis, considering the oceanic loads and the unilateral contact with the seabed, extending the current standard analysis for situations in which very large rotations occurs, in particular, large torsion. Details of the nonlinear 3D model and loads from oceanic environment are discussed, including the contact unilateral constraint.
机译:在海上应用中,有些元素可以建模为长梁,例如,浸入海水中的脐带电缆,柔性和刚性管材和软管,从漂浮装置悬挂到海底。这些元素的悬挂部分被称为“上升部分”,并承受海洋环境负荷,例如海浪和海流。这项工作提出了一种结构精确的3D梁模型,使用有限元方法对立管进行离散化。用于旋转参数化的更新拉格朗日框架已用于描述精确的运动学。目标是进行全面的静力分析,同时考虑海洋载荷和与海床的单边接触,将当前的标准分析扩展到发生很大旋转(特别是大扭转)的情况。讨论了非线性3D模型和海洋环境负载的详细信息,包括接触单边约束。

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