首页> 外文会议>Proceedings of the 6th international conference on arch bridges. >Research on strengthening suspended deck system for half-through CFST arch bridge by setting longitudinal steel-tubular trusses
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Research on strengthening suspended deck system for half-through CFST arch bridge by setting longitudinal steel-tubular trusses

机译:设置纵向钢管桁架来加强CFST拱桥中悬桥系统的研究

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The crossbeams are the main members for suspended deck system of many existing half-through CFST arch bridges. And the suspended longitudinal RC T-shaped floor beams in the through part of the bridge are supported on the PC cross beams which is suspended by high tensile steel cable hangers to the arch ribs. Such a deck system without a longitudinal stiffening girder will cause large deflection and vibration because of its weak integrity as well as vertical stiffness. Therefore, it is necessary to carry out research on strengthening of such kind of deck system to improve the risk-resistance capacity. Taking Shitanxi Bridge as an example, the strengthening project is proposed by setting longitudinal steel tubular trusses between the crossbeams. The static and dynamic behaviors of this bridge before and after strengthening were analyzed and field tests for both static and dynamic behaviors after strengthening were also carried out. Analysis and test results show that setting steel tubular truss beams between the crossbeams is effective on improving the dynamic performance and risk-resistance capacity for the suspended deck system of half-through or through CFST arch bridges without longitudinal stiffening beams. This strengthening method is not only economic and applicable, but also has little influence on traffic flow during construction.
机译:横梁是许多现有的半穿透CFST拱桥的悬吊甲板系统的主要构件。桥贯穿部分中悬挂的纵向RC T形纵向地板横梁被支撑在PC横梁上,该横梁通过高强度钢缆悬挂器悬挂在拱肋上。这种没有纵向加劲梁的甲板系统由于其整体性和垂直刚度较弱而会引起较大的挠曲和振动。因此,有必要对加强这种甲板系统进行研究,以提高其抗风险能力。以石滩溪大桥为例,通过在横梁之间设置纵向钢管桁架来提出加固方案。分析了该桥加固前后的静态和动态行为,并对加固后的静态和动态行为进行了现场测试。分析和测试结果表明,在横梁之间设置钢管桁架梁可以有效地改善半贯通或CFST拱桥悬吊甲板系统的动力性能和抗风险能力,而无纵向加劲梁。这种加固方法不仅经济实用,而且对施工期间的交通流量影响很小。

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