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Driving safety analysis of various types of vehicles on long-span bridges in crosswinds considering aerodynamic interference

机译:考虑空气动力学干扰,在跨跨度桥梁上的各种类型车辆的安全性分析

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Strong winds threaten the safety of vehicles on long-span bridges considerably, which could force traffic authorities to reduce speed limits or even close these bridges to traffic. In order to maintain the safe and economic operation of a bridge, a reasonable evaluation of the driving safety on that bridge is needed. This paper aims at carrying outdriving safety analyses for three types of vehicles on a long-span bridge in crosswinds by considering the aerodynamic interference between the bridge and the vehicles based on the wind-vehicle-bridge coupling vibration analysis. Firstly, CFD numerical simulations along with previously obtained wind tunnel testing results were used to determine the aerodynamic force coefficients of the three types of vehicles on the bridge. Secondly, the dynamic responses of the bridge and the vehicles under crosswinds were simulated, and based on those, the driving safety analyses for the three types of vehicles on the bridge were carried out for both cases considering and not considering the aerodynamic interference between the vehicles and the bridge. Finally, the effect of the aerodynamic interference on the safety of the vehicles was investigated. The results show that the aerodynamic interference between the bridge and the vehicles not only affects the accident critical wind speed but also the accident type for all three types of vehicles. Such effects are also different for each of the three types of vehicles being studied.
机译:强风威胁着长期桥梁的车辆的安全性,这可能强迫交通当局降低速度限制甚至关闭这些桥梁到交通。为了保持桥梁的安全和经济运行,需要对该桥梁的驾驶安全进行合理评估。本文旨在通过考虑桥梁与车辆之间的空气动力学干扰来携带三种类型的车辆的安全性分析,这是在桥梁和车辆之间的气动桥接振动分析中的空气动力学干扰。首先,CFD数值模拟以及先前获得的风洞测试结果用于确定桥上三种类型的车辆的空气动力力系数。其次,模拟了桥梁和跨越式车辆的动态响应,并基于那些,考虑到车辆之间的空气动力学干扰,对桥上的三种车辆的驱动安全性分析进行了推动和桥梁。最后,研究了空气动力学干扰对车辆安全的影响。结果表明,桥梁和车辆之间的空气动力学干扰不仅影响事故临界风速,而且影响所有三种车辆的事故类型。对于所研究的三种类型的车辆,这些效果也不同。

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