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Residual ultimate strength formulations of locally damaged steel stiffened cylinders under combined loads

机译:组合负载下局部损坏钢筋混凝剂的剩余终极强度配方

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摘要

This paper aims to derive new simple and consistently reliable residual strength equations for predicting the residual ultimate strength of steel dented stiffened cylinders under combined axial compression and radial pressure including hydrostatic pressure. For this, two types of the stiffened cylinders, namely, stringer- and/or ring-stiffened cylinders, which are generally main components of offshore marine structures used in semi-submersibles, submarines, tension legs of platforms (TLPs), and other various types of floating offshore structures, are investigated. Firstly, the various collision damage scenarios which illustrated the collision accidents of offshore stiffened cylinders with supply vessels or floating subjects, were analysed. Then, a finite element modelling of the stiffened cylinders was developed using a commercial software package ABAQUS/Explicit after being validated against available test results. Next, rigorous parametric studies on full-scaled design examples of stiffened cylinders were carried out by changing the design variables. Based on the rigorous case of the study results, new simple design equations, which are used to predict the ultimate residual strength of the damaged stiffened cylinders under combined loads are proposed through a regression study. Finally, the accuracy and reliability of the proposed equations have been compared with available test data and a nonlinear finite element analysis (NFEA). These equations can be useful for the initial design stage of stiffened cylinders under the risk conditions of offshore structures in the case of collision incidents.
机译:本文旨在推出新的简单且始终可靠的残余强度方程,以预测轴向压缩和径向压力下的钢筋凹陷加强圆柱体的剩余终极强度,包括静压压力。为此,两种类型的加强圆柱体,即纵梁和/或环状气瓶,通常是半潜艇,潜艇,平台张力腿(TLP)和其他各种各样的近海船舶结构的主要部件研究了浮动海上结构的类型。首先,分析了示出了具有供应血管或浮动受试者的离岸加强圆柱体的碰撞事故的各种碰撞损坏方案。然后,在验证可用测试结果后,使用商业软件包ABAQUS /显式开发加强汽缸的有限元建模。接下来,通过改变设计变量来执行关于加强圆柱体的全缩放设计示例的严格参数研究。基于研究结果的严格案例,通过回归研究提出了新的简单设计方程,用于预测组合负载下的损坏加强圆柱体的最终残留强度。最后,已经将所提出的方程的准确性和可靠性与可用的测试数据和非线性有限元分析(NFEA)进行比较。在碰撞事件的情况下,这些等式可用于在海上结构的风险条件下加强圆柱体的初始设计阶段。

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