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首页> 外文期刊>Marine Structures >Energy dissipation in high-energy ship-offshore jacket platform collisions
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Energy dissipation in high-energy ship-offshore jacket platform collisions

机译:高能船舶-海上夹层平台碰撞中的能量耗散

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Ship collisions with offshore structures may be characterized by large amounts of kinetic energy that can be dissipated as strain energy in either the ship, or the installation, or shared by both. In this paper a series of FE numerical simulations are performed with the aim of providing a clearer understanding on the strain energy dissipation phenomenon, particularly upon the ship-structure interaction. Ships of different dimensions and layouts are modelled for impact simulations. Likewise, three platform jacket models of different sizes and configurations are considered. The collision cases involve joints, legs, and braces and are simulated for several kinetic energy amounts of the vessels and different impact orientations. An overview of the plastic deformation mechanisms that can occur in both ship and jacket structure is also given. The results from the various models with different collision scenarios are compared in terms of the strain energy dissipation with respect to the different ship/installation strength ratios. From the FEA simplified approaches are also derived in terms of the relative stiffness of the two structures for assessing the responses and energy absorptions of the two structures. The conclusions drawn from this study can be applied to a broader range of collision assessment of offshore steel jacket platforms subjected to high-energy ship impacts.
机译:船舶与近海结构的碰撞可能具有大量动能,这些动能可以在船舶或设施中以应变能的形式消散,或由两者共享。在本文中进行了一系列有限元数值模拟,目的是对应变能耗散现象,特别是在船舶与结构的相互作用上有一个更清晰的了解。对不同尺寸和布局的船舶进行建模以进行碰撞仿真。同样,考虑了三种不同尺寸和配置的平台外套模型。碰撞情况涉及关节,腿和支架,并针对船只的多个动能量和不同的冲击方向进行了模拟。还概述了可能在船舶和护套结构中发生的塑性变形机制。相对于不同的船舶/设施强度比,根据应变能量耗散比较了具有不同碰撞场景的各种模型的结果。从有限元分析中,还根据两种结构的相对刚度推导了简化的方法,以评估两种结构的响应和能量吸收。这项研究得出的结论可应用于遭受高能船舶撞击的海上钢套平台的更广泛的碰撞评估。

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