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An Experimental Study on the Wind-Induced Response of Variable Message Signs

机译:风对可变信息符号反应的实验研究

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Variable Message Sign (VMS) systems are widely used in motorways to provide traffic information to motorists. Such systems are subjected to wind-induced structural vibration that can lead to damage due to fatigue. The limited information that is available on the safe wind design of VMS motivated a large scale testing that was conducted at the Wall of Wind (WOW) Experimental Facility at Florida International University (FIU). One of the objectives of the present study was to experimentally assess the wind-induced force coefficients on VMS of different geometries and utilize these results to provide improved design guidelines. A comprehensive range of VMS geometries were tested and mean normal and lateral force coefficients, in addition to the twisting moment coefficient and eccentricity ratio, were determined using the measured data for each model, for wind directions of 0o and 45o. The results confirmed that the mean drag coefficient on a prismatic VMS is smaller than the value of 1.7 suggested by American Association of State Highway and Transportation Officials (AASHTO). An alternative to this value is presented in the form of a design matrix with coefficients ranging from 0.98 to 1.28, depending on the aspect and depth ratio of the VMS. Furthermore, results indicated that the corner modification on a VMS with chamfered edges demonstrated a reduction in the drag coefficient compared to sharper edges. Finally, the dynamic loading effects were considered by evaluating the gust effect factor, using the ASCE 7 formulations, for various VMS weights and geometries. The findings revealed a wide range of possible gust effect factors, both above and below the current AASHTO specification of 1.14. Future research may include different geometries of VMS and a wider range of wind directions.
机译:可变消息标志(VMS)系统广泛用于高速公路,以向驾驶员提供交通信息。这样的系统会遭受风引起的结构振动,该振动会导致由于疲劳而造成的损坏。 VMS安全风设计的可用信息有限,因此在佛罗里达国际大学(FIU)的风墙(WOW)实验设施中进行了大规模测试。本研究的目的之一是通过实验评估不同几何尺寸的VMS上的风致力系数,并利用这些结果提供改进的设计指南。测试了广泛范围的VMS几何形状,并使用每个模型的实测数据确定了0o和45o风向的平均法向力和横向力系数,以及扭转力矩系数和偏心率比。结果证实,棱柱形VMS的平均阻力系数小于美国国家公路和运输官员协会(AASHTO)建议的1.7。该值的替代形式以设计矩阵的形式表示,其系数范围从0.98到1.28,具体取决于VMS的长宽比和深度比。此外,结果表明,与更锋利的边缘相比,具有倒角边缘的VMS上的拐角修改显示出阻力系数的降低。最后,通过使用ASCE 7配方评估阵风影响因子来考虑各种VMS重量和几何形状的动态载荷影响。这些发现揭示了可能的阵风影响因素,高于和低于当前AASHTO规范1.14。未来的研究可能包括VMS的不同几何形状和更大范围的风向。

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