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Limit Analysis of Complex 3D Steel Structures Using Second-Order Cone Programming

机译:使用二阶锥规划的复杂3D钢结构极限分析

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The modelling of complex steel structures under static loading using rigid perfectly plastic material is presented within the framework of second-order cone programming (SOCP). The classic upper and lower bound principles of yield analysis, naturally written as optimization problems, are formulated as a pair of dual second-order cone programs which are then solved using a state-of-the art primal-dual interior point method (IPM). The IPM shows good robustness and efficiency along with reduced computational times especially for limit analysis. The whole process is illustrated first with basic steel structures checks of fillet welds or beams under biaxial bending moment, and second with complex 3D steel assemblies. The results show good agreement with the failures modes and resistance values presented in the Eurocode and allows us to obtain a reliable estimate of the ultimate resistance within a reasonable time.
机译:在二阶锥规划(SOCP)的框架内,提出了使用刚性完美塑性材料在静态载荷下对复杂钢结构的建模。收益率分析的经典上下限原理,自然地写为优化问题,被公式化为一对双重二阶锥规划,然后使用最新的原始对偶内点法(IPM)进行求解。 IPM具有良好的鲁棒性和效率,并减少了计算时间,尤其是对于极限分析而言。首先用双轴弯曲力矩下的角焊缝或梁的基本钢结构检查来说明整个过程,其次用复杂的3D钢装配体来说明。结果表明与欧洲规范中的失效模式和电阻值具有良好的一致性,并使我们能够在合理的时间内获得最终电阻的可靠估计。

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