首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >An enhanced identification procedure to determine the rational functions and aerodynamic derivatives of bridge decks
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An enhanced identification procedure to determine the rational functions and aerodynamic derivatives of bridge decks

机译:增强识别程序,以确定桥甲板的合理功能和空气动力学衍生物

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摘要

Development of time-efficient and reliable methods for estimating the aeroelastic properties of bridge decks is of major importance for bridge engineers to make wind tunnel testing more productive and less expensive. This paper presents an enhanced and more efficient procedure to identify rational functions and aerodynamic derivatives from wind tunnel tests of section models. The accuracy of the proposed method was investigated for a wedged shaped box section, a rectangular section with B/D 1:10 aspect ratio and a twin deck section. In comparison with the data from standard forced vibration tests, the proposed procedure obtained nearly identical results for the eight most influential aerodynamic derivatives. In the case of the twin deck section, the experimental results show that the aerodynamic derivatives are very sensitive to the motion applied and that a linear model therefore cannot uniquely define the self-excited forces for the particular twin deck section tested. The identified results were used to predict the self-excited forces induced under various motion and wind conditions to verify the accuracy of the identified models. Some comments are also given regarding the observed nonlinear effects in the recorded self-excited forces.
机译:估算桥梁甲板的空气弹性特性的节省和可靠的方法的开发对于桥梁工程师来说,使风洞测试更加富有成效,更便宜。本文提高了增强且更高效的程序,以识别来自段模型的风洞测试的合理功能和空气动力学衍生物。研究了所提出的方法的准确性,针对楔形箱部分,具有B / D 1:10纵横比和双甲板部分的矩形截面。与来自标准强制振动试验的数据相比,所提出的程序获得了八个最有影响力的空气动力学衍生物的几乎相同的结果。在双甲板部分的情况下,实验结果表明,空气动力学衍生物对所施加的运动非常敏感,因此线性模型不能唯一地限定所测试的特定双甲板部分的自我激发力。所识别的结果用于预测各种运动和风力条件下引起的自我激发力,以验证所识别的模型的准确性。还给出了记录的自我兴奋力中观察到的非线性效应的一些评论。

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