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首页> 外文期刊>Journal of bridge engineering >Shake Table Test on a Long-Span Cable-Stayed Bridge with Viscous Dampers Considering Wave Passage Effects
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Shake Table Test on a Long-Span Cable-Stayed Bridge with Viscous Dampers Considering Wave Passage Effects

机译:考虑波通效应的粘性阻尼器的长跨度斜拉桥摇动台测试

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摘要

This work focused on the damping effectiveness of additional longitudinal viscous dampers employed for seismic control of long-span cable-stayed bridges considering wave passage effects. A 1/35-scale physical model scaled from a typical long-span cable-stayed bridge was designed, constructed, and tested on four shake tables. The seismic responses of the systems with and without viscous dampers, under different types of ground motions considering uniform or traveling wave excitations, were analyzed and compared. The test results show that the damping effectiveness of the additional longitudinal viscous dampers was significantly reduced under near-field ground motion. The wave passage had a great influence on the displacement responses of the towers and the deck and the relative variation amplitudes of the cable forces near the midspan. Positive damping effectiveness was commonly achieved from the additional longitudinal viscous dampers under the far-field ground motions when considering the wave passage effect, whereas negative damping effectiveness was observed under the near-field ground motion at certain wave velocities.
机译:考虑到波通道效应,这项工作的额外纵向粘性阻尼器的额外纵向粘性阻尼器的抗震效能控制。从典型的长跨度斜拉桥中缩放的1/35级物理模型设计,构造,并在四个摇动表上进行测试。分析并在考虑均匀或行驶波激发激发的不同类型的地面运动下,在考虑均匀或行驶波激发的地面运动的地震反应。测试结果表明,在近场地面运动下,额外的纵向粘性阻尼器的阻尼有效性显着降低。波通道对塔的位移响应和甲板的位移响应以及缆线附近的电缆力的相对变化幅度的影响很大。在考虑波通道效应时,通常在远场接地运动下的额外纵向粘液阻尼器中常见地实现正阻尼效果,而在某些波速下的近场地面运动下观察到负阻尼效果。

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