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Results from Ultimate Load Tests on 3D Jacket-Type Structures

机译:3D夹克式结构的极限载荷测试结果

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The capacity of steel structures to yield and redistribute loads can contribute significantly to their ability to tolerate damage and to survive extreme events. This system reserve strength, beyond the design capacity of components, has recently been examined in a series of large-scale ultimate strength tests of a jacket type structure. As described in the paper, the 3D constraint of the frame has contributed to significant differences in the response mode and capacity of components in comparison with isolated test data on which current design practices are based. The project included an industry-wide exercise to benchmark analytical strength predictions against three of the eight test cases. Important guidelines for future best practice are now being formulated through the Structural Systems Group described.
机译:钢结构屈服和重新分配载荷的能力可以极大地提高其承受破坏和承受极端事件的能力。该系统保留的强度超出了组件的设计能力,最近已在一系列护套类型结构的大规模极限强度测试中进行了检验。如本文所述,与当前设计实践所基于的隔离测试数据相比,框架的3D约束导致了响应模式和组件容量的显着差异。该项目包括一项针对整个行业的活动,以针对八个测试案例中的三个测试案例进行分析强度预测的基准测试。现在,通过所述的“结构系统小组”正在制定关于未来最佳实践的重要准则。

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