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Parametric studies on the impact response of offshore triceratops in ultra-deep waters

机译:近视超深水中近三分之一体影响的参数研究

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摘要

This paper addresses the parametric studies on the impact response of offshore triceratops subjected to low-velocity impact. Triceratops is the object of the present impact study which is one of the new generation offshore complaint platforms with three buoyant legs connected to deck by ball joints. The innovative geometric form and compliant characteristics distinguish triceratops from conventional offshore platforms. The buoyant legs in triceratops are usually designed as orthogonally stiffened cylindrical shell structures. Numerical studies are carried out using Ansys Explicit analysis solver to predict the impact response and local damage of buoyant leg of triceratops. From the impact force time history obtained through explicit analysis, the hydrodynamic time response analysis is carried out in Ansys Aqwa to predict the response of deck and buoyant legs. Parametric studies are mainly focussed on the effect on the location of the indenter, size of the indenter, type of indenter, number of stiffeners and strain-rate definition. Force displacement curves are reported along with detailed numerical observations.
机译:本文解决了对低速撞击近距离的影响响应的参数研究。 Triceratops是目前影响研究的目的,它是新一代海上投诉平台之一,其中三个浮标腿部通过球形接头连接到甲板。创新的几何形式和兼容特性区分了传统海上平台的三角镜。三角架上的浮腿通常被设计为正交加强的圆柱形壳结构。使用ANSYS明确分析求解器进行数值研究,以预测三角架浮腿的影响响应和局部损伤。通过通过显式分析获得的冲击力时间历史,在ANSYS AQWA中进行流体动力时间响应分析,以预测甲板和浮腿腿的响应。参数研究主要侧重于对压痕的位置的影响,压痕的大小,压紧的类型,加强率的数量和应变率定义。报告了力位移曲线以及详细的数值观察。

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