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Effect of pounding on nonlinear seismic response of skewed highway bridges

机译:冲击对偏斜公路桥梁非线性地震响应的影响

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Skewed bridges are more vulnerable to earthquake-induced failure than straight bridges due to pounding at expansion joints between the bridge superstructure and abutments. This study focuses on analyzing pounding effect and rotation mechanism of highway bridges with prestressed concrete box girder and seat-type abutments when subjected to bi-directional near-fault ground motions, especially seismic response with respect to abutment skew angle. These analytical models include nonlinear characteristics of skewed bridge components, especially pounding effect between the superstructure and abutment in both longitudinal and transverse directions. Nonlinear time history analyses were performed to predict the pounding force and its effect on the seismic response of skewed highway bridges using the Kelvin model. The analytical results indicate that the pounding of skewed bridge causes significant seismic displacement response and local damage of superstructure. In addition, the pounding in the transverse initial gap reduced the rotation response of the skewed bridge, and the skew angle has significant effect on the seismic behavior of skewed highway bridges. The pounding force and back-fill response decreased with an increasing skew angle, but deck displacement in longitudinal direction and torsion response increased apparently. Bridges with skew angle increased demand on shear keys under the strong earthquake excitation.
机译:与直桥相比,斜桥比直桥桥更容易受到地震破坏,因为直桥在桥上部结构和桥台之间的伸缩缝处受到冲击。这项研究的重点是分析双向预应力混凝土箱梁和座式基台的公路桥梁在双向近断层地震动下,特别是对基台偏斜角的地震反应的冲击作用和旋转机理。这些分析模型包括偏斜桥梁构件的非线性特征,特别是上部结构和基台之间在纵向和横向上的撞击效应。使用开尔文模型进行了非线性时程分析,以预测冲击力及其对偏斜公路桥梁地震响应的影响。分析结果表明,斜桥的重击会引起明显的地震位移响应和上部结构的局部破坏。此外,横向初始间隙的撞击降低了斜交桥的旋转响应,并且斜交角对斜交公路桥梁的抗震性能具有重大影响。冲击力和回填响应随偏斜角的增加而减小,但甲板沿纵向的位移和扭转响应却明显增加。在强烈地震激励下,具有斜角的桥梁增加了对剪力键的需求。

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