首页> 外文期刊>Earthquake Engineering & Structural Dynamics >Dynamics and seismic performance of rocking bridges accounting for the abutment-backfill contribution
【24h】

Dynamics and seismic performance of rocking bridges accounting for the abutment-backfill contribution

机译:摇滚桥梁占抵垒回填贡献的动态与地震性能

获取原文
获取原文并翻译 | 示例

摘要

The present study explores analytically the concept of rocking isolation in bridges considering for the first time the influence of the abutment-backfill system. The dynamic response of rocking bridges with free-standing piers of same height and same section is examined assuming negligible deformation for the substructure and the superstructure. New relationships for the prediction of the bridge rocking motion are derived, including the equation of motion and the restitution coefficient at each impact at the rocking interfaces. The bridge structure is found to be susceptible to a failure mode related to the failure of the abutment-backfill system, which can occur prior to the well-known overturning of the rocking piers. Thus, a new failure spectrum is proposed called Failure Minimum Acceleration Spectrum (FMAS) which extends the overturning spectrum put forward in previous studies, and it differs in principle from the latter. The comparison with the dynamic response of bridges modelled as rocking frames without abutments reveals not only that seat-type abutments and their backfill have a generally beneficial effect on the seismic performance of rocking pier bridges by suppressing the free rocking motion of the frame system, but also that the simple frame model cannot capture all salient features of the rocking bridge response as it misses potential failure modes, overestimating the rocking bridge's safety when these modes are critical.
机译:本研究分析探讨了桥梁回填系统的第一次影响的桥梁中摇摆隔离的概念。采用相同高度和相同部分的独立墩的摇摆桥的动态响应假设对子结构和上层结构可忽略不计。推导出用于预测桥梁摇摆运动的新关系,包括运动方程和恢复系数在摇摆界面处的每次冲击。发现桥结构容易受到与抵靠回填系统的故障相关的故障模式的影响,这可以在摇摆墩的众所周知的翻转之前发生。因此,提出了一种称为失败最小加速度(FMA)的新故障谱,其延伸了先前研究中提出的翻转光谱,并且原则上与后者的原则不同。与没有支座的摇摆框架建模的桥梁的动态响应的比较揭示了通过抑制框架系统的自由摇摆运动来对座椅型支座及其回填对摇摆墩桥的抗震性能的造成巨大影响。此外,简单的框架模型不能捕获摇摆桥响应的所有突出特征,因为它错过了潜在的故障模式,在这些模式至关重要时高估摇滚桥的安全性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号