首页> 外文期刊>Journal of bridge engineering >Full-Response Prediction of Coupled Long-Span Bridges and Traffic Systems under Spatially Varying Seismic Excitations
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Full-Response Prediction of Coupled Long-Span Bridges and Traffic Systems under Spatially Varying Seismic Excitations

机译:地震激励变化下大跨径桥梁和交通系统的全响应预测

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摘要

A long-span bridge supports a large number of vehicles, which are usually present when an earthquake strikes the bridge site due to the low predictability of earthquake events. Existing seismic analyses of long-span bridges have failed to characterize the comprehensive coupling effects among the bridge structure, vehicles, and spatially varying seismic excitations. A new full-response prediction methodology for the coupled bridge-traffic interaction system under spatially varying earthquake excitations was developed by capturing the interaction effects not only between the bridge and moving vehicles, but also between the earthquake excitations and the coupled bridge-traffic system. Different from most existing bridge seismic analyses, in which only traditional earthquake loads in terms of inertial forces are applied on the bridge structure, the new formulation also incorporated the coupled earthquake forces on both the bridge and vehicles, which were expressed as functions of the bridge-traffic coupling matrices and earthquake displacement inputs. The proposed methodology was numerically demonstrated on a prototype long-span bridge and traffic system under spatially varying earthquake excitations. The full responses of the bridge and vehicles were predicted when the bridge-traffic system was subjected to earthquake excitations. Numerical results suggest that the coupled earthquake force as derived in the present study has notable influence on the dynamic performance of the bridge and vehicles under seismic excitations. (C) 2018 American Society of Civil Engineers.
机译:大跨度的桥梁支撑着大量的车辆,由于地震事件的可预测性低,通常会在地震袭击桥梁现场时出现。现有的大跨度桥梁地震分析未能描述桥梁结构,车辆和空间变化的地震激励之间的综合耦合效应。通过捕捉桥梁与运动车辆之间,以及地震激励与桥梁-交通耦合系统之间的相互作用效应,开发了一种在空间变化的地震激励下桥梁-交通耦合相互作用系统的全响应预测方法。与大多数现有的桥梁地震分析不同,在传统的桥梁地震分析中,仅将惯性力方面的传统地震荷载施加到桥梁结构上,新的公式也将桥梁和车辆上的耦合地震力纳入其中,以桥梁的功能表示交通耦合矩阵和地震位移输入。在空间变化的地震激励下,在原型大跨度桥梁和交通系统上用数值方法论证了所提出的方法。当桥梁交通系统受到地震激励时,可以预测桥梁和车辆的全部响应。数值结果表明,在地震激励下,本研究得出的耦合地震力对桥梁和车辆的动力性能具有显着影响。 (C)2018美国土木工程师学会。

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