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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Experimental determination of the two-dimensional aerodynamic admittance of typical bridge decks
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Experimental determination of the two-dimensional aerodynamic admittance of typical bridge decks

机译:典型桥甲板二维空气动力入场的实验

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摘要

In this paper, the two-dimensional lift, drag and pitching moment aerodynamic admittances of three typical bridge deck sections, including a streamlined box section, an edge section and a truss section are identified by wind tunnel tests using a statistical identification approach and high-frequency dynamic balance measurement technique. An empirical formula for determining the two-dimensional aerodynamic admittance is proposed and compared with the commonly used Sears function and Davenport function. The results show that the two-dimensional lift and moment aerodynamic admittances for the three types of bridge decks are larger than Sears' function in the concerned wavenumber range of the buffeting analysis. This indicates that the Sears function may underestimate the vertical and torsional buffeting response of prototype long-span bridges. The two-dimensional drag aerodynamic admittance of the truss section corresponds strongly with Davenport's function, which verifies the reasonableness of Davenport's function that was originally developed for the two-dimensional drag aerodynamic admittance of open lattice structures. Furthermore, it was found that the two-dimensional aerodynamic admittance is insensitive to the mean wind velocity. The effect of wind attack angle on the two-dimensional aerodynamic admittance of bridge decks cannot be neglected.
机译:在本文中,使用统计识别方法的风洞测试识别三个典型桥甲板部分的二维提升,阻力和俯仰矩空气动力入场,包括流线型箱截面,边缘部分和桁架部分。频率动态平衡测量技术。提出了用于确定二维空气动力学进入的经验公式,并与常用的西尔斯函数和达文波函数进行比较。结果表明,三种类型的桥式甲板的二维升力和时刻空气动力学导入在额外的波数范围内的烧灼功能大于自湿度分析的范围。这表明SEARS函数可能低估原型长跨度桥的垂直和扭转频响应。桁架部分的二维阻力空气动力学入场对达文波特的函数强烈对应,这验证了达文波特的功能最初为开放晶格结构的二维阻力空气动力学进入最初开发的功能。此外,发现二维空气动力导纳对平均风速不敏感。风攻击角对桥甲板的二维空气动力入场的影响不能被忽略。

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