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Two-Dimensional Aerodynamic Admittance of a Flat Closed-Box Bridge

机译:平闭箱桥的二维空气动力学入场

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Wind tunnel tests were carried employing two different free-stream turbulent flow fields and one harmonic vertical gust profile conditions, and pressure measurements of the buffeting force on six separated strips of a flat closed-box bridge-deck section model were recorded. Two-dimensional aerodynamic admittance functions (2D-AAF) were obtained using one- and two-wavenumber computational theory, respectively. An empirical expression for determining the 2D-AAF for flat closed-box bridge decks in free-stream turbulence was proposed based on the extensive results of the experimental data. This study indicates that the 2D-AAF of the flat closed-box bridge deck is higher than the Sears function in the low-frequency range, and the aerodynamic admittance remains almost constant for reduced frequencies in the range of 0-0.145. For a given bridge section, its 2D-AAF is unique and related only to the geometry of the deck cross section, regardless of whether or not the strip assumption is valid. The fluctuating pressure near the leading edge of the bridge deck in the harmonic vertical gust was obviously much larger than that obtained in free-stream turbulent wind fields, which significantly affects the magnitude of the lift force. (C) 2020 American Society of Civil Engineers.
机译:在采用两种不同的自由流湍流流场和一个谐波垂直阵风的条件下进行风隧道试验,并记录了六个分离盒桥式桥面模型的六个分离条带上的抖动力的压力测量。使用单波数计算理论获得二维空气动力入场功能(2D-AAF)。提出了基于实验数据的广泛结果提出了用于在自由流湍流中确定平闭箱桥甲板2D-AAF的经验表达。该研究表明,平闭箱桥式桥的2D-AAF高于低频范围内的剑杆功能,气动进入几乎恒定在0-0.145范围内的频率降低。对于给定的桥接部分,其2D-AAF是唯一的,并且仅在甲板横截面的几何形状相关,无论条带假设是否有效。在谐波垂直阵风中桥式甲板的前缘附近的波动压力明显大于在自由流湍流风场中获得的压力,这显着影响提升力的大小。 (c)2020年美国土木工程师协会。

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