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Computer simulation of dynamic interactions between vehicle and long span box girder bridges

机译:车辆与大跨度箱梁桥动力相互作用的计算机模拟

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摘要

Moving vehicle loads, associated with roadway traffic can induce significant dynamic effects on the structural behaviours of bridges, especially for long-span bridges. The main objective of current research is to study traffic induced dynamic responses of long-span box-girder bridges. The finite element method has been employed in this study to obtain a three-dimensional mathematical model for the bridge system. For vehicle-bridge dynamic interaction analysis, the vehicle is modeled as a more realistic three-axle, six-wheel system, and the corresponding dynamic interaction equations have been derived. The bridge-vehicle interaction is affected by many factors. The current study has been focused on such factors as: vehicle speed, vehicle damping ratio, multiple traffic lanes, mass ratio of vehicle and bridge, and dynamic characteristics of bridge. Case studies have been conducted to investigate these factors by using several box girder bridge examples including Confederation Bridge, the longest box girder bridge in the world.
机译:与道路交通相关的移动车辆载荷可能会对桥梁的结构行为产生重大的动力影响,特别是对于大跨度桥梁而言。当前研究的主要目的是研究交通诱导的大跨度箱梁桥的动力响应。在这项研究中已采用有限元方法来获得桥梁系统的三维数学模型。对于车桥动力相互作用分析,将车辆建模为更逼真的三轴六轮系统,并推导了相应的动力相互作用方程。桥梁与车辆的相互作用受许多因素影响。当前的研究集中在以下因素上:车速,车辆阻尼比,多行车道,车辆与桥梁的质量比以及桥梁的动力特性。通过使用几个箱梁桥示例进行了案例研究,以研究这些因素,包括世界上最长的箱梁桥联邦桥。

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