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Dynamic analysis of long-span cable-stayed bridges under wind and traffic using aerodynamic coefficients considering aerodynamic interference

机译:考虑空气动力干扰的空气动力学系数大跨度斜拉桥在风和交通条件下的动力分析

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摘要

The aerodynamic characteristics of vehicles are critical to assess vehicle safety and passenger comfort for vehicles running on long span bridges in a windy environment. However, in previous wind vehicle bridge (WVB) system analysis, the aerodynamic interference between the vehicle and the bridge was seldom considered, which will result in changing aerodynamic coefficients. In this study, the aerodynamic coefficients of a high-sided truck on the ground (ground case) and a typical bridge deck (bridge deck case) are determined in a wind tunnel. The effects of existent structures including the bridge deck and bridge accessories on the high-sided vehicle's aerodynamic characteristics are investigated. A three-dimensional analytical framework of a fully coupled WVB system is then established based on the fmite element method. By inputting the aerodynamic coefficients of both cases into the WVB system separately, the vehicle safety and passenger comfort are assessed, and the critical accidental wind speed for the truck on the bridge in a windy environment is derived. The differences in the bridge response between the windward case and the leeward case are also compared. The results show that the bridge deck and the accessories play a positive role in ensuring vehicle safety and improving passenger comfort, and the influence of aerodynamic interference on the response of the bridge is weak.
机译:车辆的空气动力学特性对于评估在大风环境下在大跨度桥梁上行驶的车辆的车辆安全性和乘客舒适度至关重要。但是,在以前的风车桥(WVB)系统分析中,很少考虑到车与桥之间的空气动力干扰,这将导致空气动力系数的变化。在这项研究中,在风洞中确定了地面上的高架卡车(地面案例)和典型的桥面板(桥面板案例)的空气动力学系数。研究了现有结构(包括桥面和桥附件)对高侧车辆空气动力学特性的影响。然后基于有限元方法建立了全耦合WVB系统的三维分析框架。通过将两种情况的空气动力学系数分别输入到WVB系统中,可以评估车辆的安全性和乘客的舒适度,并得出在有风环境中桥上卡车的临界意外风速。还比较了迎风壳和背风壳之间的桥梁响应差异。结果表明,桥面及附件在保证车辆安全,提高乘客舒适度方面发挥了积极作用,空气动力干扰对桥响应的影响较弱。

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