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Study on Design of Concrete Box Girder of A Railway Swivel Cable-Stayed Bridge

机译:铁路旋转斜拉桥混凝土箱梁设计研究

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A swivel cable-stayed bridge over the existing railway is a span across the existing railway. The recommended scheme for the main bridge is (128 + 388 + 128) m steel mixed composite beam swivel diagonal pull bridge with span. The cables of the diagonal pull bridge are arranged according to the fanshaped central double cable plane, taking into account the mechanical performance and aesthetics. The bridge structure adopts semi floating system. The concrete swivel diagonal pull bridge is adopted in the comparison scheme. The design of the bridge is three spans and (138 + 268 + 138) m prestressed concrete box girder is adopted. The cables are arranged according to the central double cable plane, and the bridge composition adopts the consolidation system. Considering the needs of bridge operation and maintenance in the later stage of the bridge, when the dead weight of concrete diagonal pull bridge is within the ideal range, the concrete swivel diagonal pull bridge can be preferred. In order to calculate the dead weight of the selected bridge, the author uses the finite element software to model the whole bridge and calculate the weight of the bridge. The results show that the dead weight of the concrete swivel diagonal pull bridge is too large, which has exceeded the maximum bearing capacity of the existing spherical hinge. In order to continue to use the concrete swivel diagonal pull bridge scheme, it is necessary to optimize the design of the concrete swivel diagonal pull bridge scheme.
机译:现有铁路上的旋转斜拉桥是现有铁路的跨度。主要桥梁的推荐方案是(128 + 388 + 128)M钢混合复合梁旋转对角线拉桥,跨度。对斜拉桥的电缆根据变形的中央双电缆平面布置,考虑到机械性能和美观。桥梁结构采用半浮动系统。比较方案采用混凝土旋转对角线拉桥。桥梁的设计是三个跨度,采用(138 + 268 + 138)M预应力混凝土箱梁。电缆根据中央双电缆平面排列,桥接器组合物采用整合系统。考虑到桥梁的桥梁操作和维护的需要,当混凝土对角线拉动桥的蒸重在理想范围内时,混凝土旋转对角线拉桥可以是优选的。为了计算所选桥的止返重量,作者使用有限元软件来模拟整个桥梁并计算桥的重量。结果表明,混凝土旋转对角线拉桥的蒸重太大,超出了现有球形铰链的最大承载力。为了继续使用混凝土旋转斜拉桥方案,有必要优化混凝土旋转斜拉桥方案的设计。

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