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Aerodynamic flutter analysis of a new suspension bridge with double main spans

机译:新型双主跨悬索桥的气动颤振分析

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摘要

Based on the ANSYS, an approach of full-mode aerodynamic flutter analysis for long-span suspension bridges has been presented in this paper, in which the nonlinearities of structure, aerostatic and aerodynamic force due to the deformation under the static wind loading are fully considered. Aerostatic analysis is conducted to predict the equilibrium position of a bridge structure in the beginning, and then flutter analysis of such a deformed bridge structure is performed. A corresponding computer program is developed and used to predict the critical flutter wind velocity and the corresponding flutter frequency of a long-span suspension bridge with double main span. A time-domain analysis of the bridge is also carried out to verify the frequency-domain computational results and the effectiveness of the approach proposed in this paper. Then, the nonlinear effects on aerodynamic behaviors due to aerostatic action are discussed in detail. Finally, the results are compared with those of traditional suspension bridges with single main span. The results show that the aerostatic action has an important influence on the flutter stability of long-span suspension bridges. As for a suspension bridge with double main spans, the flutter mode is the first anti-symmetrical torsional vibration mode, which is also the first torsional vibration mode in natural mode list. Furthermore, a double main-span suspension bridge is better in structural dynamic and aerodynamic performances than a corresponding single main-span structure with the same bridging capacity.
机译:基于ANSYS,本文提出了一种大跨度悬索桥全模态气动颤振分析方法,其中充分考虑了结构,静力和静风荷载作用下的变形引起的气动力的非线性。 。首先进行空气静力分析以预测桥梁结构的平衡位置,然后对这种变形的桥梁结构进行颤振分析。开发了相应的计算机程序,并将其用于预测具有双主跨的大跨度悬索桥的临界振颤风速和相应的振颤频率。还对该桥进行了时域分析,以验证频域计算结果和本文提出的方法的有效性。然后,详细讨论了由于空气静力作用而对空气动力学行为的非线性影响。最后,将结果与单跨度的传统悬索桥进行了比较。结果表明,静力作用对大跨度悬索桥的颤振稳定性有重要影响。对于具有双主跨的悬索桥,颤振模式是第一个反对称扭转振动模式,也是自然模式列表中的第一个扭转振动模式。此外,双主跨悬索桥在结构动力和空气动力学性能方面均优于具有相同桥接能力的相应单主跨结构。

著录项

  • 来源
    《Wind & structures》 |2011年第3期|p.187-208|共22页
  • 作者单位

    State Key Laboratory for Disaster Reduction in Civil Engineering, Department of Bridge Engineering, Tongji University, Shanghai 200092, P.R.China;

    State Key Laboratory for Disaster Reduction in Civil Engineering, Department of Bridge Engineering, Tongji University, Shanghai 200092, P.R.China;

    Civil and Environmental Engineering Department, Louisiana State University, Baton Rouge, LA 70803, United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    suspension bridge; double main spans; full-mode; flutter; aerostatic action;

    机译:吊桥;双主跨;全模式扑;空气静力作用;

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