首页> 外文期刊>Earthquake Engineering & Structural Dynamics >Hanger replacement influence on seismic response of suspension bridges: Implementation to the Bosphorus Bridge subjected to multi-support excitation
【24h】

Hanger replacement influence on seismic response of suspension bridges: Implementation to the Bosphorus Bridge subjected to multi-support excitation

机译:吊架替代对悬架桥梁地震反应的影响:实施到多支撑励磁的博斯普鲁斯桥

获取原文
获取原文并翻译 | 示例

摘要

The effects of hanger replacement from inclined to vertical configuration on seismic response of long-span suspension bridges are investigated considering multi-support earthquake excitation. The Bosphorus Bridge is investigated due to its recent comprehensive rehabilitation, mainly involving hanger replacement. The finite-fault stochastic simulation method (FINSIM) is utilized for multi-point earthquake time-history generation. The developed finite element (FE) model both for the inclined and vertical hanger arrangement are verified through the structural health monitoring (SHM) data. Based on the comparative analysis, the tension force of vertical hangers is found to be lower than that of inclined hangers, whereas the tension force of the main and back-stay cables remains the same. The compressive axial force of the deck decreases relatively in the case of the vertical hanger arrangement, whereas the cross-sectional forces at the tower base section increase. The approach viaducts are not affected by the vertical hanger arrangement. According to the demand/capacity ratios for damage estimation under the max. earthquake (2475 years return period), structural damage on the tower base section may be expected for both hanger arrangements, while these sections perform well under design scenario earthquake. The expansion joint of the bridge with inclined hangers is also estimated to be damaged; however, this displacement is lower in the case of the vertical hanger arrangement due to the viscous dampers. The findings also reveal that a change in hanger form of a suspension bridge can necessitate other structural retrofit, such as using viscous dampers to limit longitudinal displacements of the deck and retrofitting the bridge towers.
机译:考虑多支撑地震激发,研究了衣架替代倾斜对长跨度悬架桥的地震响应的垂直配置的影响。由于其最近的综合康复而调查了博斯普鲁斯桥,主要涉及衣架更换。有限故障随机仿真方法(FINSIM)用于多点地震时间历史一代。通过结构健康监测(SHM)数据验证倾斜和垂直吊架装置的开发有限元(FE)模型。基于比较分析,发现垂直吊架的张力低于倾斜吊架的张力,而主和后支电缆的张力保持相同。在垂直悬挂装置的情况下,甲板的压缩轴向力相对减小,而塔架基部处的横截面力增加。方法高架桥不受垂直悬挂装置的影响。根据最大损伤估计的需求/容量比。地震(2475年返回期),塔架排列的塔架基部的结构损坏,距离这些部分在设计方案地震下表现良好。据估计,带倾斜衣架的桥梁的膨胀接头估计被损坏;然而,在由于粘性阻尼器的垂直悬挂装置的情况下,该位移较低。该发现还揭示了悬挂桥的吊架形式的变化可以需要其他结构改装,例如使用粘性阻尼器来限制甲板的纵向位移并改造桥塔。

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