首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Fully coupled driving safety analysis of moving traffic on long-span bridges subjected to crosswind
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Fully coupled driving safety analysis of moving traffic on long-span bridges subjected to crosswind

机译:侧风作用下大跨度桥梁移动交通全耦合行车安全分析

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High-sided vehicles often experience considerable single-vehicle accident risks under crosswinds. Long-span cable-supported bridges are usually flexible, wind-sensitive and support considerable amount of vehicles on a daily basis. When vehicles are driven through a long-span bridge, the complex dynamic interactions among wind, vehicles and the bridge significantly affect not only the safety of the bridge members, but also passing vehicles. Therefore, realistic modeling of the bridge-traffic system by characterizing these critical coupling effects becomes essential for rationally assessing traffic safety of passing traffic through a long-span bridge. In most existing studies about traffic safety study on bridges, vehicle safety was assessed for only one single vehicle or uniformly distributed vehicles at a constant driving speed. It is known that the traffic flow on a long-span bridge is typically stochastic and vehicle speeds vary following some traffic rules. Based on the stochastic traffic flow simulation, two new analytical frameworks, one using mode superposition and the other using the finite element (FE) formulation, were proposed recently for the bridge-stochastic traffic system. By considering the full-coupling effects among all the vehicles of the traffic flow, bridge and wind, the dynamic response of each individual vehicle of the stochastic traffic can be accurately obtained for the first time. Built based on the recent advances made by the authors, an integrated dynamic interaction and safety assessment model of the fully-coupled bridge-traffic system is further developed without considering vehicle aerodynamic interference and shielding effects. Traffic safety of vehicles in the stochastic traffic through the prototype long-span cable-stayed bridge is investigated as a demonstration. (c) 2015 Elsevier Ltd. All rights reserved.
机译:高侧车辆经常在侧风下遇到相当大的单车事故风险。大跨度斜拉桥通常是灵活的,对风敏感的,每天可支撑大量车辆。当车辆通过大跨度的桥梁行驶时,风,车辆和桥梁之间​​复杂的动态相互作用不仅会严重影响桥梁构件的安全,还会影响过往车辆。因此,通过表征这些关键的耦合效应,对桥梁交通系统进行现实的建模,对于合理评估通过大跨度桥梁的交通安全至关重要。在大多数有关桥梁交通安全研究的现有研究中,仅以恒定行驶速度对仅一辆车辆或均匀分布的车辆进行了车辆安全性评估。众所周知,大跨度桥梁上的交通流量通常是随机的,并且车速会根据某些交通规则而变化。基于随机交通流仿真,最近为桥梁随机交通系统提出了两个新的分析框架,一个使用模式叠加,另一个使用有限元(FE)公式。通过考虑交通流量,桥梁和风的所有车辆之间的全耦合效应,可以首次准确地获得随机交通的每个车辆的动态响应。基于作者的最新进展,在不考虑车辆空气动力干扰和屏蔽效果的情况下,进一步开发了全耦合桥梁交通系统的集成动力相互作用和安全评估模型。作为示例,研究了通过原型大跨度斜拉桥进行的随机交通中车辆的交通安全性。 (c)2015 Elsevier Ltd.保留所有权利。

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