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Experimental and numerical study on seismic response of inclined tower legs of cable-stayed bridges during earthquakes

机译:地震斜拉桥倾斜塔腿抗震响应的实验与数值研究

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摘要

More than half of cable-stayed bridges adopt the tower with inclined legs, which can be loaded with a combination of bending, torsion, shear and axial force under earthquakes. To study the seismic response of inclined tower legs, shake table tests were conducted on a 1/20 scaled cable-stayed bridge model with an inverted Y-shaped tower. A description of the model design was introduced and observed damages including horizontal and diagonal cracks at inclined tower legs were presented. A numerical model, considering reduction of torsional stiffness of inclined tower legs after diagonal cracking, was established. The feasibility of the numerical model was validated by a comparison of numerical and test results, which showed good correlation in displacement response at tower top and deck end, and cable force. Based on numerical results, the crack torsional moment of the inclined tower could be easily reached at small peak ground acceleration (PGA), leading to a substantial reduction of torsional stiffness of the section. This reduction helped alleviate the torsional moment demand at larger PGAs and delay the torsional failure of the tower legs. Numerical results also revealed that the bending moment is the primary factor to cause concrete cracks at the lower regions of inclined tower legs whereas complex interaction of large bending moment and torsion results in flexural and torsional damage near the intersection. Conventional ways, which adopt an elastic behavior of torsion, either using stiffness prior to or after diagonal cracking, will lead to intensive overestimation or underestimation of torsional response of the inclined tower legs.
机译:超过一半的缆绳座桥通过斜腿采用斜塔,可以在地震下装载弯曲,扭转,剪切和轴向力的组合。为了研究倾斜塔腿的地震响应,在具有倒Y形塔的1/20缩放的斜拉桥模型上进行摇动台测试。介绍了模型设计的描述,并介绍了包括在倾斜塔腿处的水平和对角线裂缝的损伤。建立了一种数值模型,考虑到对角裂纹后倾斜塔腿的扭转刚度降低。通过比较数值和测试结果的比较验证了数值模型的可行性,这在塔顶和甲板端的位移响应和电缆力方面表现出良好的相关性。基于数值结果,在小峰接地加速度(PGA)中可以容易地达到倾斜塔的裂缝扭转力矩,从而显着降低该部分的扭转刚度。这种减少有助于减轻较大的PGA的扭矩需求,并延迟塔腿的扭转失效。数值结果还揭示了弯矩是引起倾斜塔腿下部区域的初级因素,而大弯矩和扭转的复杂相互作用导致交叉口附近的弯曲和扭转损伤。采用扭转的弹性行为的常规方式,无论是在对角线开裂之前或之后使用刚度,都会导致倾斜塔腿的扭转响应强度估计或低估。

著录项

  • 来源
    《Engineering Structures》 |2019年第15期|180-194|共15页
  • 作者

    Yi Jiang; Le Jianzhong;

  • 作者单位

    Tongji Univ State Key Lab Disaster Reduct Civil Engn 1239 Siping Rd Shanghai 200092 Peoples R China|Univ Hong Kong Dept Civil Engn Pokfulam Rd Hong Kong Peoples R China;

    Tongji Univ State Key Lab Disaster Reduct Civil Engn 1239 Siping Rd Shanghai 200092 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cable-stayed bridge; Inclined tower leg; Torsional effect; Shake table test; Seismic response;

    机译:斜拉桥;倾斜塔腿;扭转效果;摇动台测试;地震反应;

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