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In-situ test and dynamic response of a double-deck tied-arch bridge

机译:双甲板Tied-Arch桥的原位测试和动态响应

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In this study, in-situ dynamic tests of the world's longest steel box tied-arch bridge over the Yangtze River, China, are reported. The double deck bridge supports highway and monorail systems at upper and lower levels, respectively. Strain, displacement, and acceleration responses were measured and used to investigate the vibration characteristics of the bridge when excited by running trains and/or trucks at a speed of 5-60 km/h, train braking, and truck bouncing. Impact factors were correlated with the running speed of trains and trucks. A three-dimensional finite element model of the coupled monorail-train-bridge vibration system accounting for track irregularities was established to understand the system behavior and validated by the experimental results. Truck bouncing was the dominant impact factor on bridge responses. The running speed of vehicles determined the riding comfort of traveling trains.
机译:在本研究中,据报道,中国世界上最长的钢箱架拱桥的原位动态试验。 双层桥梁分别在上层和下层支撑高速公路和单轨系统。 测量菌株,位移和加速度响应,并用于通过以5-60 km / h,火车制动和卡车弹出的速度通过运行火车和/或卡车兴奋来研究桥的振动特性。 影响因素与火车和卡车的运行速度相关。 建立了耦合单轨列车桥振动系统的三维有限元模型,用于了解违规性的轨道违规性,以了解系统行为并通过实验结果验证。 卡车弹跳是桥梁响应的主导影响因素。 车辆的运行速度确定了旅行列车的骑行舒适。

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