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Determination of aerodynamic forces on stationary/moving vehicle-bridge deck system under crosswinds using computational fluid dynamics

机译:利用计算流体力学确定侧风下固定/移动车桥甲板系统上的空气动力

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摘要

To investigate the safety of road vehicles running on a long-span bridge under high crosswinds, the aerodynamic forces of a moving vehicle-bridge deck system need to be determined. This paper reports the use of computational fluid dynamics (CFD) to simulate the aerodynamic forces on coupled vehicle-bridge deck systems under crosswinds in terms of aerodynamic coefficients. The aerodynamic coefficients of a stationary vehicle-deck system were simulated and then compared with wind tunnel results. A relative velocity method was then used to obtain the aerodynamic forces of a moving vehicle-deck system. The moving effects on the aerodynamic forces on the vehicle-deck system were evaluated. The results show that the movement of the vehicle on the first lane of the bridge deck does affect the aerodynamic coefficients of the bridge deck but has only slight effects on the aerodynamic coefficients of the vehicle if the relative yaw angle to the vehicle is taken into account.
机译:为了研究在强风作用下在大跨度桥梁上行驶的公路车辆的安全性,需要确定行驶中的桥面系统的空气动力。本文报道了使用计算流体动力学(CFD)来模拟侧风条件下空气动力系数对耦合的车桥甲板系统上的空气动力的影响。模拟了固定式甲板系统的空气动力学系数,然后将其与风洞结果进行了比较。然后,使用相对速度方法获得了移动式甲板系统的空气动力。评估了对甲板系统上空气动力的运动影响。结果表明,车辆在桥面甲板第一车道上的移动确实会影响桥面甲板的空气动力学系数,但如果考虑相对于车辆的相对偏航角,则对车辆的空气动力学系数影响很小。

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