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Nonlinear Dynamic Analysis of a Track Bridge Structure Designed for a Floating Bridge

机译:浮桥设计轨道桥梁结构的非线性动力学分析

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The addition of Light Rail Trains (LRT) to the Homer M. Hadley Memorial Bridge, the widest floating bridge in the world located in Seattle, Washington, is currently in its design process. The design team has concluded that a transition Track Bridge (TB) is necessary to accommodate large movements induced by the floating bridge in relation to the fixed approach structures and to provide reliable LRT service along the 1-90 corridor. Dynamic train-structure interaction analysis was required to evaluate the TB performance and ride quality. A high fidelity finite element model of the bridge was developed along with two TBs. Each TB has been designed with 34 double-concave Friction Pendulum Bearings (FPBs) supporting bearer bars at both ends. The FPB model includes bottom and top plates and a slider in between, all modeled with solid elements. Simulation of frictional contact interaction between the plates and slider allows limited transverse movement of the rail under moving train loads. In addition to numerical analysis, component and full scale tests have been planned to examine the TB kinematics as well as FPB behavior. This paper presents a unique multi-scale FE analysis of a train-structure interaction system which includes detailed model of TBs incorporated in the global model of the floating bridge.
机译:在华盛顿西雅图的世界最宽的浮桥中加入了荷马·哈德利纪念桥的荷马·哈德利纪念桥,目前处于其设计过程中。设计团队得出结论,过渡轨道桥(TB)是必要的,以适应浮桥引起的大型运动,相对于固定的方法结构,并提供沿1-90走廊提供可靠的LRT服务。需要动态列车结构相互作用分析来评估TB性能并乘坐质量。桥的高保真有限元模型与两个TB一起开发。每个TB都设计有34个双凹摩擦摆轴承(FPBS),支撑在两端承载杆。 FPB型号包括底板和顶板和介于之间的滑块,所有这些都与固体元素建模。板材和滑块之间的摩擦接触相互作用的仿真允许在移动列车负载下轨道的有限横向移动。除了数值分析外,已经计划了组件和全规模测试来检查TB运动学以及FPB行为。本文提出了一种独特的火车结构交互系统的多尺度FE分析,包括在浮桥的全球模型中结合的TBS的详细模型。

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