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Load distribution and dynamic response of multi-girder bridges with FRP decks

机译:FRP桥面的多梁桥的荷载分布及动力响应

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摘要

Bridges with FRP decks are gaining popularity, and there is a growing need to understand the behavior of FRP deck bridges. The characteristics of bridges with FRP decks (such as mass, stiffness, and damping) are significantly different from those of bridges with traditional concrete decks. For this reason, detailed finite element analyses are used in the present study to investigate the load distribution and the dynamic response of FRP deck bridges. The bridge-vehicle interaction based on a three dimensional vehicle-bridge coupled model is carried out on both steel and concrete multi-girder bridges. The dynamic response of bridges is obtained in the time domain considering the road roughness of the deck as a vertical excitation to the vehicles. The load distribution and the dynamic response of bridges are compared between the FRP deck and concrete deck bridges. In addition, there are some arguments whether a composite action between the deck and girders should be pursued or if a simple non-composite design should be used for FRP deck bridges. Discussions on this aspect have been made by modeling both the fully composite and partially composite FRP deck bridges.
机译:带有FRP桥面的桥梁正变得越来越流行,并且越来越需要了解FRP桥面的性能。带有FRP桥面的桥梁的特性(例如质量,刚度和阻尼)与带有传统混凝土桥面的桥梁的特性明显不同。因此,在本研究中使用了详细的有限元分析来研究FRP桥面桥梁的荷载分布和动力响应。在钢制和混凝土多梁桥上都进行了基于三维车桥耦合模型的车桥相互作用。桥梁的动态响应是在时域中获得的,将甲板的道路粗糙度视为对车辆的垂直激励。比较了玻璃钢桥面和混凝土桥面桥梁的桥梁荷载分布和动力响应。此外,对于FRP甲板桥梁是否应该在甲板和大梁之间进行综合作用还是应采用简单的非复合设计存在一些争论。通过对全复合材料FRP和部分复合材料FRP桥架进行建模,已经对此进行了讨论。

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