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NUMERICAL EVALUATION OF ENERGY ABSORPTION IN SHIP-OFFSHORE FIXED PLATFORM COLLISIONS

机译:海上固定平台碰撞能量吸收的数值评估

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Both the maritime traffic and the number of built offshore platforms have been continuously increasing over recent times. Among the structures built offshore, the fixed type constitutes the majority. The consequent diversity of plausible collision scenarios involving offshore platforms and passing ships must therefore consider aspects such as different ship size, different impact energy or different impact locations. For high energy collisions, large deformations are expected on both the platform and ship structures. It is expected that part of the energy absorption in the platform is confined to localized zones where plastic deformations take place, although the elastic strain energy may also be significant. For such impact problems, the amounts of strain energy in each structure are mainly dependent on the relative stiffness of the structures. By taking different ship and platform configurations as well as different contact points between the two bodies, different relative stiffness of the two structures can be tested in order to provide a clearer understanding of the dissipation of strain energy. The possible plastic deformation mechanisms are analyzed and simplified approaches are considered for prediction in comparison with the numerical results carried out by finite element analysis. Based on the results, some evaluations are made with respect to the code of practice in offshore platform design against ship impact.
机译:海上交通量和已建造的海上平台的数量在最近一段时间一直在不断增加。在海上建造的结构中,固定类型占大多数。因此,涉及海上平台和过往船舶的可能发生的碰撞场景的多样性因此必须考虑诸如不同的船舶尺寸,不同的碰撞能量或不同的碰撞位置等方面。对于高能碰撞,预计平台和船舶结构都会发生大变形。尽管弹性应变能也可能很大,但可以预期平台中部分能量吸收被限制在发生塑性变形的局部区域。对于这样的冲击问题,每个结构中的应变能的量主要取决于结构的相对刚度。通过采用不同的船和平台配置以及两个主体之间的不同接触点,可以测试两个结构的不同相对刚度,以便更清楚地了解应变能的耗散。与有限元分析的数值结果相比,分析了可能的塑性变形机制,并考虑了简化方法进行预测。根据结果​​,针对海上平台设计中针对船舶影响的操作规范进行了一些评估。

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