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首页> 外文期刊>Romanian Journal of Transport Infrastructure >“Bowstring” Arches in Langer System Without Wind Bracing
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“Bowstring” Arches in Langer System Without Wind Bracing

机译:Langer系统中的“弓形”拱形没有风撑

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Arch bridges are slender structures and can be efficiently used in the range of medium to large spans. These structures have an improved aesthetic aspect and in the same time a low construction height, with obvious advantages regarding reduced costs in the infrastructuers and their foundations. For this type of structures usually composite or orthotropic decks are used. Lately, innovative solutions have been used in designing arch bridges, especially discarding the top wind bracing system. The level of axial forces and bending moments in the arches and tie imply the design of sections with sufficient stiffness and strength in both directions in order to ensure the general stability of the arches, without the need for top wind bracing. Moreover, the cross section of the arches is not constant, but shifts in accordance with the variation of the bending moments, in order to ensure their lateral stability. This paper studies a road bridge with parallel Bowstring arches, with a span of 108m and a carriageway 7.00m wide, sustained by a deck made up of crossbeams 2m apart and a concrete slab. The main beams are held by ties arranged in the Langer system, 10 to 14m apart from each other. The sag of the arches is 18m high. The analyzed structure was proposed for construction in the city of Oradea and is used for crossing the “Cri?ul Repede” river, between One?tilor street on the left bank and the Sovata, Fagului and Carpa?i streets on the right bank. The performed analyses have the following two main objectives: to establish the critical load for which the failure of the arches occurs by instability and to underline the influence of different wind bracing systems on the bridge’s collapse loads respectively.
机译:拱桥是细长的结构,可以在中到大跨度范围内有效使用。这些结构具有改善的美学外观,同时具有较低的结构高度,在降低基础设施及其基础的成本方面具有明显的优势。对于这种类型的结构,通常使用复合材料或正交异性板。最近,创新的解决方案已用于设计拱桥,尤其是放弃了顶部风撑系统。拱形结构和系带中的轴向力和弯矩水平意味着在两个方向上都具有足够的刚度和强度的型材设计,以确保拱形结构的总体稳定性,而无需顶部风撑。此外,拱的横截面不是恒定的,而是根据弯矩的变化而移动,以确保其横向稳定性。本文研究了一个平行的弓弦拱的公路桥梁,跨度为108m,车道宽为7.00m,由相距2m的横梁和混凝土板组成的桥面支撑。主梁由布置在Langer系统中的拉杆固定,拉杆相互间隔10至14m。拱门的下陷高18m。被分析的结构被提议在奥拉迪亚(Oradea)市进行建设,并用于穿越“ Cri?ul Repede”河,该河位于左岸的Onetiltil街道与右岸的Sovata,Fagului和Carpa?i街道之间。进行的分析具有以下两个主要目标:建立由于不稳定而导致拱体破坏的临界载荷,并强调不同的风撑系统分别对桥梁的倒塌载荷的影响。

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