首页> 外文会议>The 4th international symposium on lifetime engineering of civil infrastructure >BEHAVIOR OF TIANXINGZHOU YANGTZE BRIDGE OF WUGUANG PASSENGER DEDICATED LINE
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BEHAVIOR OF TIANXINGZHOU YANGTZE BRIDGE OF WUGUANG PASSENGER DEDICATED LINE

机译:武光客运专线天兴洲长江大桥的行为

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The newly completed Wuhan Tianxingzhou Changjiang Bridge is a key project of the Passenger Dedicated Line from Wuhan to Guangzhou. It is a cable stayed bridge with two towers, three cable planes and three trusses, and its spans are arranged as 98+196+504+196+98 m. The bridge has two layers, the upper is six carriageways, and the lower is four line railways. The ballast railway floor system consists of steel stringers, crossbeams and concrete slab which composite only with the steel stringers. In this paper the main structure system, the modifying of the railway floor system and the behaviour of the bridge is introduced and studied. The design of the railway floor system was quite difficult and experienced a hard process and changed several times. The key problem is how to conforming the deformations and stress levels of the lower chords, the stringers, the crossbeams and the concrete slab. The prime plan of the railway floor system did not arranger expansion stringer or every six panel arrange one expansion stringer. FEM results showed that this plan was not available. The main problem was that the stresses of the crossbeams caused by horizontal bending were too large. Then the ideas of arranging braking bracings or arranging more expansion stringers were proposed. The former could reduce the stresses of crossbeams effectively, but the stresses of the stringers increased obviously and became a governing factor of design. At last the plan of arranging one expansion stringer every two panels was finally used and good effect was obtained. The stiffness and strength is sufficient and the behaviour of the bridge is properly.
机译:武汉天兴洲长江大桥是武汉至广州客运专线的重点工程。它是一座斜塔桥,有两个塔,三个电缆平面和三个桁架,其跨度为98 + 196 + 504 + 196 + 98 m。该桥有两层,上层是六个车道,下层是四线铁路。压载铁路地板系统由钢桁条,横梁和混凝土板组成,仅与钢桁条复合。介绍和研究了主要结构系统,铁路底板系统的改造以及桥梁的性能。铁路地板系统的设计非常困难,经历了艰苦的过程,并且进行了多次更改。关键问题是如何使下弦,桁条,横梁和混凝土板的变形和应力水平一致。铁路底盘系统的主要计划没有布置扩展纵梁,或者每六个面板布置一个扩展纵梁。有限元分析结果表明该计划不可用。主要问题是由水平弯曲引起的横梁的应力太大。然后提出了布置制动支架或布置更多的膨胀桁条的想法。前者可以有效地减小横梁的应力,但纵梁的应力明显增加,成为设计的决定因素。最后,最终采用了每两块板布置一个纵梁的方案,取得了良好的效果。刚度和强度足够,桥的行为适当。

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