不同跨径斜拉桥桥面材料对造价影响的研究

IF 0.1 Q4 ENGINEERING, CIVIL
Ali Köken, A. Farhad
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引用次数: 0

摘要

摘要社会领域的最新发展也导致了交通活动的增加。运输活动的增加导致修建了新的道路和桥梁。不同的桥梁施工系统可用于克服大跨度障碍。斜拉桥是通过悬索克服大跨度的一种比其他桥型建筑载体系统更有利的施工系统。因此,它也受到了设计者的广泛青睐。斜拉桥发展的最大因素无疑是钢索。斜拉桥是一种随着跨度的增大而变轻的桥梁结构,具有更大的柔性,包括受非线性因素影响的拉索系统。斜拉桥的造价因跨度不同而不同。桥梁系统中使用的跨度以及桥面材料对成本有很大影响。在斜拉桥系统中,桥面由钢筋混凝土和钢材建造。斜拉桥的成本在世界各地都有广泛的讨论;因此,研究跨度和桥面材料对斜拉桥造价的影响。这类桥梁的主要承载元件是缆索、甲板和塔架,在这些元件中,塔桥承受着桥梁的所有重量,甚至承受着车辆、风等其他外部载荷。在本研究中,使用CSI桥梁程序创建并分析了组成斜拉桥系统的缆索、甲板、塔架元件的三维模型。AASHTO LRFD标准被广泛用于CSI桥梁项目的桥梁系统分析和世界桥梁系统设计。本研究对250500750100015002000m跨度的钢筋混凝土和钢甲板斜拉桥进行了分析和设计。获得了斜拉桥系统分析和设计中使用的材料数量和成本,并对结果进行了解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of the Effect of the Deck Material on the Cost in Cable-Stayed Bridges with Different Spans
Abstract Recent developments in the social sphere also cause an increase in transportation activities. Increased transport activities lead to the construction of new roads and bridges. Different bridge construction systems are available to overcome large span obstacles. Cable-stayed bridges are more advantageous construction systems than other bridge type building carrier systems in overcoming large spans through suspension cables. Therefore, it is also widely preferred by designers. The biggest factor in the development of cable-stayed bridges is undoubtedly steel cables. Cable-stayed bridges are bridge structures that become lighter with the increase of the span, which has a more expanded flexibility, and that includes a cable system with the effect of nonlinear factors. Costs of cable-stayed bridges vary according to different spans. The span as well as the deck material used in the bridge system have a great effect on the cost. In cable-stayed bridge systems, decks are constructed of reinforced concrete and steel. The costs of cable-stayed bridges are widely discussed around the world; therefore, the effect of the span and deck material on the cost of cable-stayed bridges is being investigated. The main bearing elements of such bridges are cables, decks, and towers, and among these elements, the tower bridge carries all the weight of the bridge, even other external loads such as vehicle, wind, etc. In this study, the three-dimensional model of the cable, deck and tower elements that make up the cable-stayed bridge system was created and analysed using the CSI Bridge Program. The AASHTO LRFD Standards, which are widely used in the analysis of bridge systems with the CSI Bridge program and the design of bridge systems in the world, were used. In the study, the analysis and designs of cable-stayed bridges with reinforced concrete and steel deck at 250, 500, 750, 1000, 1500, 2000 meters span were carried out. The amount of materials and costs used in the analysis and design of the cable-stayed bridge systems were obtained and the results were interpreted.
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