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A study on the minimum column-to-beam moment ratio of steel moment resisting frame with various connection models

机译:不同连接模型下钢制抗弯框架最小柱梁弯矩比的研究

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This paper presents the minimum column-to-beam moment ratio of steel moment resisting frame (SMRF) with various connection models using the non-dominated sorting genetic algorithm-II (NSGA-II). We evaluate the minimum column-to-beam moment ratio of SMRF required to ensure the beam-sway mechanism by the pushover analysis. We investigate the influence of the connections on the minimum column-to-beam moment ratio. We consider WUF-W and RBS as the connection models. The optimal algorithm used in this paper is to minimize the structural weight and the column-to-beam moment ratios through the objective functions and to induce the beam-hinge mechanism through the constraint which is to prevent the formation of plastic hinge at the column part consisting of joints. Using the 3-story example, we compare the minimum column-to-beam moment ratio of SMRF required to ensure the beam-sway mechanism according to the connection models.
机译:本文提出了使用非支配排序遗传算法-II(NSGA-II)的具有各种连接模型的钢制抗弯框架(SMRF)的最小柱梁弯矩比。我们通过推覆分析评估了确保束流摇摆机理所需的最小SMRF柱对束矩比。我们研究了连接对最小柱梁矩比的影响。我们将WUF-W和RBS视为连接模型。本文采用的最佳算法是通过目标函数使结构重量和柱梁矩比最小化,并通过约束来诱导束铰机制,以防止在柱部形成塑性铰。由关节组成。使用3层示例,我们根据连接模型比较了确保束流摇摆机制所需的最小SMRF柱对束矩比。

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