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Development of Traffic Live-Load Models for Bridge Superstructure Rating with RBDO and Best Selection Approach

机译:基于RBDO和最佳选择方法的桥梁上部结构额定交通荷载模型的建立。

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摘要

Reliability-based design optimization (RBDO) is frequently used to determine optimal structural geometry and material characteristics that can best meet performance goals while considering uncertainties. In this study, the effectiveness of RBDO to develop a load rating model for a set of bridge structures was explored, as well as the use of an alternate best selection procedure that requires substantially less computational effort. The specific problem investigated was the development of a vehicular load model for use in bridge rating, where the objective of the optimization is to minimize the variation in reliability index across different girder types and bridge geometries. Moment and shear limit states were considered, where girder resistance and load random variables were included in the reliability analysis. It was found that the proposed best selection approach could be used to develop a rating model nearly as effective as an ideal RBDO solution but with significantly less computational effort. Both approaches significantly reduced the range and coefficient of variation of the reliability index among the bridge cases considered.
机译:基于可靠性的设计优化(RBDO)通常用于确定最佳结构几何形状和材料特性,以在考虑不确定性的同时最好地满足性能目标。在这项研究中,探索了RBDO为一组桥梁结构开发额定载荷模型的有效性,以及使用了替代的最佳选择程序,该程序所需的计算量少得多。研究的特定问题是开发用于桥梁等级的车辆载荷模型,其中优化的目的是最大程度地减少不同梁类型和桥梁几何形状之间的可靠性指标变化。考虑了弯矩和剪力极限状态,其中梁的抗力和荷载随机变量包括在可靠性分析中。发现所提出的最佳选择方法可用于开发几乎与理想RBDO解决方案一样有效的评级模型,但计算量却大大减少。两种方法都显着减小了所考虑的桥梁案例之间的可靠性指标的范围和变异系数。

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