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On the importance of cross-sectional details in the wind tunnel testing of bridge deck section models

机译:桥甲板段模型风洞检测横截面细节的重要性

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Experimentally derived aerodynamic derivatives are used to predict and prevent undesirable aeroelastic behavior of bridges and are currently considered indispensable in the design of long-span bridges. The aerodynamic derivatives are functions of the reduced frequency of motion and depend strongly on the shape of the cross-section. Therefore, the experimental results are sensitive to the degree of detail of the section model of the bridge deck, the precise modelling of the bridge railings and the testing method applied. This paper investigates how differences in the aerodynamic derivatives caused by the listed factors influence the buffeting response and critical flutter speed of a long-span suspension bridge.
机译:通过实验衍生的空气动力学衍生物用于预测和防止桥梁的不期望的气动弹性行为,目前在长跨度桥梁设计中被认为是必不可少的。空气动力学衍生物是减少运动频率的功能,并且依赖于横截面的形状。因此,实验结果对桥甲板的截面模型的细节程度敏感,桥栏杆的精确建模和应用的测试方法。本文研究了所列因素引起的空气动力学衍生物的差异影响了长跨度悬架桥的缓冲响应和临界颤动速度。

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