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Characteristics of distributed aerodynamic forces on a twin-box bridge deck

机译:双箱桥甲板上分布的空气动力的特性

摘要

To facilitate an effective assessment of stress-related bridge performance and safety, stress-level buffeting analysis of a long-span cable-supported bridge is necessary. A stress-level buffeting analysis requires knowledge of characteristics of distributed aerodynamic forces on the surfaces of a bridge deck. This paper first presents a formulation for distributed aerodynamic forces on the surfaces of a bridge deck based on the quasi-steady theory. The characteristics of distributed aerodynamic forces, such as pressure coefficients, pressure admittances and span-wise pressure coherences, are introduced in the formulation. In consideration of different characteristics of incident and signature turbulences, the empirical mode decomposition is then adopted to separate their effects on the distributed aerodynamic forces. Wind tunnel pressure tests of a sectional motionless bridge deck model were conducted to identify the characteristics of distributed aerodynamic forces on the surfaces of the Stonecutters cable-stayed bridge with a twin-box bridge deck as a case study. The results indicate that the separation of incident and signature turbulence effects is necessary and that the proposed framework is feasible although more works need to be done towards a complete stress-level buffeting analysis.
机译:为了便于有效评估与应力有关的桥梁性能和安全性,有必要对大跨度斜拉桥进行应力水平的抖振分析。应力水平的抖振分析需要了解桥面表面上分布的空气动力的特性。本文首先基于准稳态理论提出了桥面表面分布的空气动力的公式。在公式中引入了分布的空气动力的特性,例如压力系数,压力导纳和跨度压力相干性。考虑到入射湍流和特征湍流的不同特征,然后采用经验模态分解来分离它们对分布的空气动力的影响。进行了分段式无桥桥面模型的风洞压力测试,以识别双箱桥桥面的昂船洲斜拉桥表面分布的空气动力的特性,作为案例研究。结果表明,将入射湍流和特征湍流效应分开是必要的,尽管需要为完成一个完整的应力水平抖振分析而做更多的工作,但是该框架是可行的。

著录项

  • 作者

    Zhu Q; Xu YL;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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