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Fatigue assessment of an existing orthotropic steel deck to comply with future traffic intensity

机译:符合未来交通强度的现有正交异性钢桥面疲劳评估

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Orthotropic Steel Decks (OSDs) are widely used in long span bridges because of their extremely light weight when compared to their load carrying capacity. These deck types typically consist of a grillage of closed trapezoidal longitudinal stiffeners and transverse web stiffeners, welded to a deck plate. As a result, fatigue problems occur due to the extensive use of complex welded connections. Unfortunately, fatigue effects have often been overlooked during design, which was also the case for an important multiple span box girder viaduct in Belgium (1978). Due to a renovation program of the ring road around Brussels, the number of traffic lanes on the viaduct should be extended from three to four. As a result, questions have been raised about the current structural health of the OSD due to fatigue and future fatigue damage accumulation. Therefore, extensive FEM analyses have been performed, taking into account various parameters such as increased traffic volume and accompanying axle loads, historical positions of the heavy lanes, historical road pavements and their temperature-dependent load spreading effects. In conclusion, accurate fatigue damages have been determined for all fatigue details. Therefore, focused inspections and design solutions can be provided, resulting in a durable bridge management for the next 60 years.
机译:正交异性钢桥面板(OSD)因其重量比承载能力轻而被广泛应用于大跨度桥梁中。这些甲板类型通常由封闭的梯形纵向加劲肋和横向腹板加劲肋组成,焊接到甲板上。因此,由于广泛使用复杂的焊接连接,会出现疲劳问题。不幸的是,疲劳效应在设计过程中经常被忽略,比利时(1978年)一座重要的多跨箱梁高架桥也是如此。由于布鲁塞尔周边环路的改造计划,高架桥上的车道数量应该从三条延长到四条。因此,由于疲劳和未来的疲劳损伤累积,人们对OSD当前的结构健康状况提出了疑问。因此,进行了广泛的有限元分析,考虑了各种参数,如增加的交通量和伴随的轴荷载、重载车道的历史位置、历史道路路面及其温度相关的荷载扩散效应。总之,已确定所有疲劳细节的准确疲劳损伤。因此,可以提供重点检查和设计解决方案,从而为未来60年提供持久的桥梁管理。

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