首页> 外文期刊>Wind & structures >Aerostatic instability mode analysis of three-tower suspension bridges via strain energy and dynamic characteristics
【24h】

Aerostatic instability mode analysis of three-tower suspension bridges via strain energy and dynamic characteristics

机译:通过应变能量和动态特性的三塔悬架桥的空气静力不稳定模式分析

获取原文
获取原文并翻译 | 示例
       

摘要

Multispan suspension bridges make a good alternative to single-span ones if the crossed strait or river width exceeds 2-3 kin However, multispan three-tower suspension bridges are found to be very sensitive to the wind load due to the lack of effective longitudinal constraint at their central tower. Moreover, at certain critical wind speed values, the aerostatic instability with sharply deteriorating dynamic characteristics may occur with catastrophic consequences. An attempt of an in-depth study on the aerostatic stability mode and damage mechanism of three-tower suspension bridges is made in this paper based on the assessment of strain energy and dynamic characteristics of three particular three-tower suspension bridges in China under different wind speeds and their further integration into the aerostatic stability analysis. The results obtained on the three bridges under study strongly suggest that their aerostatic instability mode is controlled by the coupled action of the anti-symmetric torsion and vertical bending of the two main-spans' deck, together with the longitudinal bending of the towers, which can be regarded as the first-order torsion vibration mode coupled with the first-order vertical bending vibration mode. The growth rates of the torsional and vertical bending strain energy of the clerk after the aerostatic instability are higher than those of the lateral bending. The bending and torsion frequencies decrease rapidly when the wind speed approaches the critical value, while the frequencies of the anti-symmetric vibration modes drop more sharply than those of the symmetric ones. The obtained dependences between the critical wind speed, strain energy, and dynamic characteristics of the bridge components under the aerostatic instability modes are considered instrumental in strength and integrity calculation of three-tower suspension bridges.
机译:如果横跨海峡或河流宽度超过2-3 kin,多跨度悬架桥的替代方案是一个很好的替代方案,但由于缺乏有效的纵向约束,发现多跨度三塔悬挂桥对风负荷非常敏感在他们的中心塔。此外,在某些临界风速值下,可能发生灾难性后果急剧恶化的动态特性的空气静力能不稳定。本文基于在不同风中的三个特定三塔悬架桥的应变能量和动态特性的评估,对三塔悬架桥梁的安全稳定性模式和损坏机理进行了深入研究速度及其进一步融入空气静力稳定性分析。在研究的三个桥梁上获得的结果强烈建议,其空气静力不稳定模式由两个主跨度的斜倾斜和垂直弯曲的耦合作用控制,以及塔的纵向弯曲可以被视为与一阶垂直弯曲振动模式耦合的一阶扭转振动模式。在空气静力能不稳定性之后,炼金术后螺栓和垂直弯曲应变能的生长速率高于横向弯曲的螺栓。当风速接近临界值时,弯曲和扭转频率迅速减小,而抗对称振动模式的频率比对称振动模式的频率降低。在空气稳定性模式下,桥梁部件的临界风速,应变能量和动态特性之间获得的依赖性被认为是三座悬架桥的强度和完整性计算的仪器。

著录项

相似文献

  • 外文文献
  • 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