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Rigid-flexible coupled dynamic response of steel-concrete bridges on expressways considering vehicle-road-bridge interaction

机译:考虑车-路-桥相互作用的高速公路钢-混凝土桥刚柔耦合动力响应

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摘要

Steel-concrete bridges on highways are now widely used, and their dynamic coupling effect is more prominent under heavy vehicles. At present, for the study of vehicle-bridge coupling, it is difficult to reflect the mechanical response characteristics of the bridge pavement because the bridge pavement (road) is often considered as a load. In order to get closer to reality, we use the whole vehicle model and the bridge model to realize the dynamic coupling of highway vehicle-bridge. Moreover, the vehicle model can take into account tire characteristics, such as various linear and nonlinear suspension characteristics, and tire-ground contact characteristics. So, a new vehicle-road-bridge interaction method with higher computational efficiency is proposed. This method can be used not only to analyze the overall mechanical response of bridge structure such as deflection and stress but also to analyze the dynamic characteristics of driving vehicles and the coupling force between tires and pavement and then to analyze the dynamic deformation and stress of asphalt pavement layers on the bridge. First, according to the construction drawings of a steel-concrete bridge on a highway and a Dongfeng brand three-axle vehicle, a vehicle-road-bridge interaction rigid-flexible coupling model was established. Second, the correctness and effectiveness of the vehicle-road-bridge interaction model were verified by field testing. Finally, the dynamic response of the vehicle-road-bridge interaction rigid-flexible coupling model was analyzed.
机译:如今,高速公路上的钢混凝土桥梁得到了广泛的应用,在重型车辆中它们的动力耦合效果更加突出。目前,对于车桥耦合的研究,由于桥面路面(道路)通常被视为载荷,因此难以反映桥面路面的机械响应特性。为了更接近现实,我们使用整车模型和桥梁模型来实现公路车桥的动力耦合。此外,车辆模型可以考虑轮胎特性,例如各种线性和非线性悬架特性以及轮胎-地面接触特性。因此,提出了一种计算效率更高的新的车路桥相互作用方法。该方法不仅可以用于分析桥梁结构的整体力学响应,例如挠度和应力,还可以分析驾驶车辆的动力特性以及轮胎与人行道之间的耦合力,然后分析沥青的动态变形和应力。桥上的人行道层。首先,根据公路上的钢-混凝土桥梁和东风牌三轴车辆的结构图,建立了车-路-桥相互作用的刚柔耦合模型。其次,通过现场试验验证了车路桥相互作用模型的正确性和有效性。最后,分析了车路桥相互作用的刚柔耦合模型的动力响应。

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