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Implementation of an energy-based stiffened plate formulation for lateral load distribution characteristics of girder-type bridges

机译:基于能量的加劲板配方实现梁式桥梁横向荷载分布特性

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摘要

Although the calculation of lateral load distribution behavior of girder type bridges is widely discussed in AASHTO LRFD based on semi-empirical formulations, the range of applicability is still considered as a restriction for applying the corresponding equations to complex bridge superstructures. In this study, an analytical approach is presented for determining lateral load distribution characteristics of beam-slab type bridges, using classical plate theory. In addition, finite element simulations along with field investigation of three different bridges were implemented to examine the accuracy and validity of the proposed methodology. While the classical plate model is capable enough of predicting the load sharing behavior of the bridge system, it often yields more flexible response of the system in comparison to the upper bound of finite element (FE) results. Moreover, the use of the proposed approach allows for the evaluation of bridge systems outside of the current limits of applicability, such as new composite systems or non-conventional designs, without significant deviations from current practice.
机译:尽管在AASHTO LRFD中基于半经验公式对梁式桥梁的侧向荷载分布行为的计算进行了广泛讨论,但仍将适用范围视为将相应方程式应用于复杂桥梁上部结构的限制。在这项研究中,提出了一种使用经典板理论确定梁板式桥梁横向荷载分布特征的分析方法。此外,还进行了有限元模拟以及对三个不同桥梁的现场调查,以检验所提出方法的准确性和有效性。尽管经典的板模型足以预测桥梁系统的载荷分配行为,但与有限元(FE)结果的上限相比,它通常会产生更灵活的系统响应。而且,使用所提出的方法可以在当前适用范围之外评估桥梁系统,例如新的复合系统或非常规设计,而与当前实践没有明显偏差。

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