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ANON-LINEAR TUBULAR JOINT RESPONSE MODEL FOR PUSHOVER ANALYSIS

机译:推式分析的非线性管节点响应模型

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Pushover analyses are increasingly being used by the offshore industry in the assessment, and design, of offshore structures. Traditionally, such analyses are conducted on the baesis that the tubular joints are assumed to be rigid. Whereas special finite elements for capturing the buckling behaviour of beam-columns have been in existence for some years, there has been no comparative approach for dealing with tubular joints, that is until the work reported in this paper. The work was carried out under the aegis of a major international Joint Industry Project concerned with the development, testing and calibration of an efficient analysis tool that allows the nonlinear behaviour of tubular joints within a space frame structure to be appropriately accounted for. Pushover analysis incorporating proper joint behaviour can now be efficiently conducted with minimal user intervention. The paper describes the algorithms that were developed to simulate the non-linear behaviour of tubular joints under combined axial, in-plane and out-of-plane moment loads, across the full range of the load-deformation response. The (uncoupled) P- δ and M-θ responses were first represented by powerful, yet simple, equations whose coefficients were established by reference to test data. Coupling, for combined loads, was achieved by adapting plasticity theory algorithms. The interaction of chord loads on joint response and how the issue of joints having mixed K/X/Y classification is encompassed in the algorithms is addressed. Ductility limits and unloading behaviour are discussed. Finally, testing of the codified algorithms and calibration against frame test data are mentioned. The results demonstrate that frame response is more accurately captured when joint behaviour is taken into account.
机译:在海上结构的评估和设计中,越来越多的推覆分析被海上工业使用。传统上,这种分析是在假定管接头是刚性的基础上进行的。尽管已经存在捕捉梁柱屈曲行为的特殊有限元,但直到现在为止还没有用于处理管状接头的比较方法。这项工作是在一个大型国际联合工业项目的主持下进行的,该项目涉及开发,测试和校准有效的分析工具,该工具可以适当考虑空间框架结构内管状接头的非线性行为。现在,可以在最少的用户干预下有效地进行合并适当关节行为的俯卧撑分析。本文介绍了在整个载荷-变形响应范围内,模拟轴向,平面内和平面外组合力矩载荷下管接头非线性行为的算法。 (非耦合的)P-δ和M-θ响应首先由功能强大而又简单的方程式表示,这些方程式的系数通过参考测试数据确定。通过组合可塑性理论算法实现了组合载荷的耦合。解决了弦响应在关节响应上的相互作用以及如何在算法中包含具有混合K / X / Y分类的关节问题。讨论了延性极限和卸载行为。最后,提到了编码算法的测试和针对帧测试数据的校准。结果表明,当考虑关节行为时,可以更准确地捕获帧响应。

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