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Pounding analysis of RC bridge considering spatial variability of ground motion

机译:考虑地震动空间变化的钢筋混凝土桥梁冲击分析

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摘要

To investigate the seismic pounding response of long-span bridges with high-piers under strong ground motions, shaking table tests were performed on a 1/10-scaled bridge model consisting of three continuous spans with rigid frames and one simply-supported span. The seismic pounding responses of this bridge model under different earthquake excitations including the uniform excitation and the traveling wave excitations were experimentally studied. The influence of dampers to the seismic pounding effects at the expansion joints was analyzed through nonlinear dynamic analyses in this research. The seismic pounding effects obtained from numerical analyses of the bridge model are in favorable agreement with the experimental results. Seismic pounding effect of bridge superstructures is dependent on the structural dynamic properties of the adjacent spans and characteristics of ground motions. Moreover, supplemental damping can effectively mitigate pounding effects of the bridge superstructures, and reduce the base shear forces of the bridge piers.
机译:为了研究在高地震动下高墩大跨度桥梁的地震震荡响应,在1/10比例桥梁模型上进行了振动台测试,该模型由三个连续的跨度,刚性框架和一个简单支撑的跨度组成。实验研究了该桥梁模型在不同地震激励下的地震响应,包括均匀激励和行波激励。通过非线性动力学分析,分析了阻尼器对伸缩缝处地震震荡效应的影响。从桥梁模型的数值分析获得的地震冲击效应与实验结果吻合良好。桥梁上部结构的地震冲击效应取决于相邻跨度的结构动力特性和地震动特征。此外,补充阻尼可以有效地减轻桥梁上部结构的冲击力,并减少桥墩的基础剪力。

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