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Seismic response analysis of continuous rigid frame bridge considering canyon topography effects under incident SV waves

机译:考虑峡谷地形影响的连续刚性框架桥在SV波作用下的地震反应分析

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摘要

Abstract To evaluate the importance of the canyon topography effects on large structures, based on a rigid frame bridge across a 137-m-deep and 600-m-wide canyon, the seismic response of the canyon site is analyzed using a two-dimensional finite element model under different seismic SV waves with the assumptions of vertical incidence and oblique incidence to obtain the ground motions, which are used as the excitation input on the pier foundations of the bridge with improved large mass method. The results indicate that canyon topography has significant influences on the ground motions in terms of incident angle. The peak ground acceleration values vary greatly from the bottom of the canyon to the upper corners. Under vertical incident SV waves, at the upper corners of canyon the peak ground accelerations greatly increase; whereas the peak ground accelerations diminish at the bottom corners of canyon. Under oblique incident SV waves, the shaking of the canyon slope perpendicular to the incidence direction is much more severe than that of the opposite side of canyon. And the ground surface has been characterized by larger deformations in the case of oblique incident waves. It is also concluded that the low piers and frame of the continuous rigid frame bridge are more sensitive to the multi-support seismic excitations than the flexible high piers. The canyon topography as well as the oblique incidence of the waves brings the continuous rigid frame bridge severe responses, which should be taken into account in bridge design.
机译:摘要为了评估峡谷地形对大型结构的重要性,基于横跨137米深和600米宽峡谷的刚性框架桥,使用二维有限元分析了峡谷站点的地震响应在考虑垂直入射和倾斜入射的情况下,在不同地震SV波作用下的有限元模型获得地震动,并采用改进的大质量法将其作为桥梁墩基上的激励输入。结果表明,就入射角而言,峡谷地形对地震动有重大影响。从峡谷的底部到上角,地面加速度的峰值变化很大。在垂直入射SV波作用下,在峡谷的上角,地面加速度峰值大大增加;而峰值加速度则在峡谷的底角处减小。在斜入射SV波作用下,垂直于入射方向的峡谷坡的震动要比峡谷另一侧的震动严重得多。并且,在倾斜入射波的情况下,地面具有较大的变形。得出的结论是,连续刚构桥的低墩和框架比柔性高墩对多支撑地震激励更为敏感。峡谷的地形以及波浪的倾斜入射带来了连续的刚性框架桥梁的严重响应,这在桥梁设计中应予以考虑。

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