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Test and numerical investigations on static and dynamic characteristics of extra-wide concrete self-anchored suspension bridge under vehicle loads

机译:车辆荷载下超宽混凝土自锚式悬索桥静动力特性试验与数值研究

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摘要

The present work is aimed at studying the mechanic properties of the extra-wide concrete self-anchored suspension bridge under static and dynamic vehicle loads. Based on the field test using 12 heavy trucks and finite element simulations, the static deformations of different components, stress increments and distributions of the girder, as well as the vibration characteristics and damping ratio of the Hunan Road Bridge were analyzed, which is the widest self-anchored suspension bridge in China at present. The dynamic responses were calculated using the Newmark-β integration method assisted by the simulation models of bridge and vehicles, the influences on the dynamic impact coefficient (DIC) brought by the vehicle parameters, girder width, eccentricity travel and deck flatness were also researched. The spatial effect of the girder is obvious due to the extra width, which performs as the stress increments distribute unevenly along the transverse direction, and the girder deflections and stress increments of the upper plate change as a "V" and "M" shape respectively under the symmetrical vehicle loads affected by the shear lag effect, cross slope and local effect of the wheels, the maximum of stress increments are located in the junctions with the inner webs. The obvious girder torsional deformation and the apparent unevenness of the hanger forces between the two cable planes under the eccentric vehicle loads, together with the mode shapes such as the girder transverse bending and torsion which appear relatively earlier, all reflect the weakened torsional rigidity of the extra-wide girder. The transverse displacements of towers are more obvious than the longitudinal ones. As for the influences on the DIC, the static effect of the heavier vehicles plays a major role when pass through with a higher speed and the changes of vehicle suspension stiffness generate greater impacts than the suspension damp. The values of DIC in the vehicle-running side during the eccentric travel, affected by the restricts from the static effects of the eccentric moving trucks, are significantly smaller than the vehicle-free side, the increase in the road roughness is the most sensitive one among the above influential factors. The results could provide references for the design, static and dynamic response analysis of the similar extra-wide suspension bridges.
机译:目前的作品旨在研究静态和动态车辆负荷下超宽混凝土自锚定悬架桥的机械性能。基于使用12辆重型卡车和有限元模拟,不同的部件的静态变形,应力增量和梁的分布,以及振动特性和湖南路桥的阻尼比现场试验进行分析,这是最宽的目前在中国的自锚式吊桥。的动态响应使用由桥和车辆的仿真模型协助纽马克-β积分法计算的,在动态冲击系数(DIC)由车辆参数,梁的宽度,偏心行程和甲板平面度带来的影响也进行了研究。由于额外的宽度,梁的空间效应是显而易见的,因为沿应力增量沿横向不均匀地分布,并且上板的梁偏转和压力增量分别变化为“V”和“M”形状在受剪切滞后效应的影响,横梁和车轮的局部效果影响的对称车辆负荷下,应力增量的最大值位于与内腹板的连接中。在偏心车载下的两个电缆平面之间的明显梁扭转变形和衣架之间的表观不均匀性,以及诸如相对较早的梁横向弯曲和扭转的模式形状,所有这些形状都反映了弱扭转刚度超宽的梁。塔的横向位移比纵向塔更明显。至于对DIC的影响,在重型车辆的静态效果时播放具有更高速度和车辆悬架刚度的变化通过产生比悬架阻尼较大影响的重大作用。 DIC在车辆行驶侧偏心行驶过程中受到来自偏心运动车的静态效应的限制值,比免费车辆侧显著更小,在路面不平度的增加是最敏感的一个在上述影响因素中。结果可以为类似宽悬架桥梁的设计,静态和动态响应分析提供参考。

著录项

  • 来源
    《中南大学学报(英文版)》 |2017年第10期|2382-2395|共14页
  • 作者单位

    School of Civil Engineering, Southeast University, Nanjing 210096, China;

    School of Civil Engineering, Southeast University, Nanjing 210096, China;

    Beijing Advanced Innovation Centre for Future Urban Design, Beijing University of Civil Engineering and Architecture, Beijing 100044, China;

    School of Civil Engineering, Nanjing Forestry University, Nanjing 210037, China;

    School of Civil Engineering, Nanjing Forestry University, Nanjing 210037, China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 01:06:27
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