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An Efficient Approach to Obtain Optimal Load Factors for Structural Design

机译:一种有效的方法,以获得结构设计的最佳载荷因子

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An efficient optimization approach is described to calibrate load factors used for designing of structures. The load factors are calibrated so that the structural reliability index is as close as possible to a target reliability value. The optimization procedure is applied to find optimal load factors for designing of structures in accordance with the new version of the Mexico City Building Code (RCDF). For this aim, the combination of factors corresponding to dead load plus live load is considered. The optimal combination is based on a parametric numerical analysis of several reinforced concrete elements, which are designed using different load factor values. The Monte Carlo simulation technique is used. The formulation is applied to different failure modes: flexure, shear, torsion, and compression plus bending of short and slender reinforced concrete elements. Finally, the structural reliability corresponding to the optimal load combination proposed here is compared with that corresponding to the load combination recommended by the current Mexico City Building Code.
机译:描述了一种有效的优化方法来校准用于设计结构的负载因子。校准负载因子,使得结构可靠性指标尽可能接近目标可靠性值。应用优化过程以找到根据墨西哥城市建筑代码(RCDF)的新版本设计结构的最佳负载因子。为此目的,考虑了对应于死载加上Live Load的因素的组合。最佳组合基于几种钢筋混凝土元件的参数数值分析,其使用不同的负载系数值设计。使用蒙特卡罗仿真技术。该配方应用于不同的故障模式:弯曲,剪切,扭转和压缩和压缩加弯曲和细长的混凝土元件的弯曲。最后,将对应于此处提出的最佳负载组合的结构可靠性与当前墨西哥城市建筑码推荐的负载组合相对应。

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