不同摩擦系数下采用摩擦摆支座的钢筋混凝土桥的抗震性能

J. Michael, M. Moestopo, I. Imran, D. Siringoringo, E. Lim, S. Yamazaki
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引用次数: 0

摘要

隔震系统在桥梁设计中的应用是非常重要的,特别是在地震活跃的国家。桥梁容易受到地震力的破坏。在大多数国家,弹性隔震支座在小跨度桥梁中的应用已经有一段时间了。由于维护成本低,这些轴承是首选。然而,这些轴承在遭受大位移和低温时不可靠。另一方面,摩擦滑动轴承在前一种情况下表现出更好的性能,尽管它的使用仍然限于大跨度桥梁并且尚未进一步探索。本文采用摩擦摆系统(FPS)对小跨度钢筋混凝土隔震桥梁进行了性能评价。采用非线性时程分析方法,对雅加达轻轨参考桥非隔震模型和隔震模型的抗震性能进行了研究。结果表明:在1000年地震作用下,采用FPS的隔震桥梁的基础剪力、桥面加速度绝对值和加速度放大比均优于非隔震桥梁。对不同FPS摩擦类型和布置的隔离桥进行比较,结果表明,所有A型摩擦(0 = 0.050)的参考桥在所有其他配置中表现最好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seismic performance of reinforced concrete bridge using friction pendulum bearing under different friction coefficients
Application of seismic isolation system is important in bridges design, primarily in seismically active countries. Bridges are prone to damage from seismic forces. Elastomeric isolation bearings have been applied in short-span bridges for some time in most countries. These bearings are preferred because of the low maintenance cost. However, these bearings are not reliable when subjected to large displacement and low temperatures. In the other hand, friction sliding bearings shows better performance under the former circumstances despite its use is still limited to long-span bridges and has not been explored further. This paper describes a performance evaluation of seismically-isolated short-span reinforced concrete bridge using friction pendulum system (FPS). Seismic performances of non-isolated and isolated models from the reference bridge functioning as light rapid transit (LRT) bridge in Jakarta are investigated using nonlinear time history analysis. The results demonstrate that isolated bridges with FPS performed better than non-isolated bridges under 1000-year earthquake as shown by reductions of base shear force, absolute deck acceleration, and acceleration amplification ratio. Comparisons of isolated bridges with different FPS friction types and arrangement have demonstrated that the reference bridge with all Type A friction (�0 = 0.050) applied, performed the best among all other configurations.
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