WIND TUNNEL STUDY ON THE EFFECT OF THE GAP WIDTH IN THE AERODYNAMIC AND AEROELASTIC RESPONSES OF TWIN-BOX DECKS

F. Nieto, M. C. Montoya, A. Fontán, S. Hernández, C. Rapela, A. J. Álvarez, J. Á. Jurado, Alejandro Casteleiro, V. Garcia
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引用次数: 3

Abstract

Twin-box decks have recently been introduced in long-span bridges because this type of slotted crosssection provides flutter critical wind speeds higher than mono-box streamlined decks for flexible structures. The two parallel girders are linked together by means of transverse beams with a central gap between them. Experimental and CFD studies have shown that the length of this central gap plays a key role in the aerodynamic and aeroelastic responses of the deck. In this work, the geometry of the Stonecutters Bridge in Hong Kong (China) has been chosen as an application case to conduct a series of parametric studies based on wind tunnel tests. The tests have been conducted under smooth flow, for a 1:80 geometric scale sectional model able to modify its slot length. For an ample range of gap lengths, the force coefficients and the flutter derivatives have been obtained. It has been found that the slopes of the lift and moment coefficients suffer important changes with the gap length. In the same manner, it has also been found that the gap distance modifies the values of flutter derivatives. Finally, for a longspan bridge example, the critical flutter speeds for different gaps are obtained, aiming to identify the gap length that provides a safer threshold for the flutter phenomenon. The results reported herein permit the assessment of the impact caused by the gap length in the aerodynamic and aeroelastic responses of twin-box decks.
间隙宽度对双箱式甲板气动和气动弹性响应影响的风洞研究
双箱甲板最近被引入到大跨度桥梁中,因为这种类型的开槽截面比单箱流线型甲板在柔性结构中提供更高的颤振临界风速。两个平行的大梁通过横梁连接在一起,中间有一个中心间隙。实验和CFD研究表明,该中心间隙的长度对甲板的气动和气动弹性响应起着关键作用。在这项工作中,选择了中国香港昂船洲大桥的几何形状作为应用案例,进行了一系列基于风洞试验的参数化研究。在平稳流动条件下,对能够修改槽长的1:80几何比例截面模型进行了试验。在较大的间隙长度范围内,得到了力系数和颤振导数。结果表明,升力系数和弯矩系数的斜率随间隙长度的变化而变化。以同样的方式,还发现间隙距离改变了颤振导数的值。最后,以某大跨径桥梁为例,求出不同间隙下的临界颤振速度,以确定为颤振现象提供安全阈值的间隙长度。本文报告的结果允许评估由间隙长度引起的双箱甲板气动和气动弹性响应的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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