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Static and seismic studies on steel/concrete hybrid towers for multi-span cable-stayed bridges

机译:多跨斜拉桥钢/混凝土混合动力塔的静力和地震研究

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A new type of hybrid high tower is proposed and applied to a multi-span cable-stayed bridge. This is basically a sandwich type structure and consists of a steel double box section filled with concrete. The filled concrete increases its strength due to the confined effect and the steel plates increase the resistance against local buckling because the deformation is restricted by the filled concrete. Therefore, this hybrid tower is expected to have high bending and compressive strength, and also a good ductile property. First, static analysis is conducted for different live load intensity and distribution because the multi-span cable-stayed bridge is a new structure and its static behavior is not fully understood. The live loads distributed in alternate spans give larger bending moment of the towers than the live loads distributed in full spans. Towers with three different heights are also studied, showing that the higher tower produces smaller displacements and bending moments. Safety of the tower is checked by the limit states design method. Serviceability is not a major problem for the hybrid tower. Second, seismic analysis is carried out for a multi-span cable-stayed bridge subjected to the medium and ultra-strong seismic waves specified in Japanese Seismic Code for Highway Bridges. Three support conditions of the girder at the tower cross beams are compared: movable, connection with linear springs and bi-linear springs. Bi-linear springs are very effective in reducing the dynamic displacements and bending moments of the towers. Restorability of the composite tower is checked when an ultra-strong seismic wave hits the model bridge. This study shows that a new steel/concrete hybrid tower is feasible for multi-span cable-stayed bridges and most effective for seismic forces when the girder is connected with bi-linear springs.
机译:提出了一种新型的混合高塔,并将其应用于多跨斜拉桥。这基本上是一个三明治型结构,由一个装有混凝土的钢制双箱形截面组成。由于有限的作用,填充的混凝土提高了强度,钢板增加了抵抗局部屈曲的能力,因为变形受到填充混凝土的限制。因此,期望该混合塔具有高的弯曲和抗压强度,并且还具有良好的延展性。首先,由于多跨斜拉桥是一种新型结构,并且对其静力性能尚不完全了解,因此针对不同的活载强度和分布进行静力分析。分布在交替跨度中的活荷载比分布在整个跨度中的活荷载具有更大的弯矩。还研究了三种不同高度的塔,表明较高的塔产生较小的位移和弯矩。塔的安全性通过极限状态设计方法进行检查。对于混合塔而言,可服务性不是主要问题。其次,对多跨斜拉桥进行地震分析,该桥要经受《日本公路桥梁地震法》规定的中强地震波的影响。比较了大梁在塔架横梁处的三种支撑条件:可移动,与线性弹簧和双线性弹簧的连接。双线性弹簧在减少塔架的动态位移和弯矩方面非常有效。当超强地震波撞击模型桥梁时,将检查复合塔的可恢复性。这项研究表明,一种新的钢/混凝土混合塔对于多跨斜拉桥是可行的,并且在将梁与双线性弹簧连接时,对于地震力最有效。

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