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Responses of self-anchored suspension bridge to sudden breakage of hangers

机译:自锚式悬索桥对衣架突然断裂的响应

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The girder of self-anchored suspension bridge is subjected to large compression force applied by main cables. So, serious damage of the girder due to breakage of hangers may cause collapse of the whole bridge. With the time increasing, the hangers may break suddenly for their resistance capacities decrease due to corrosion. Using nonlinear static and dynamic analysis methods and adopting 3D finite element model, the responses of a concrete self-anchored suspension bridge to sudden breakage of hangers are studied in this paper. The results show that the sudden breakage of a hanger has significant effects on tensions of the hangers next to the broken hanger, bending and torsion moments of the girder, moments of the towers and reaction forces of the bearings. The results obtained from dynamic analysis method are very different from those obtained from static analysis method. The maximum tension of hanger produced by breakage of a hanger exceeds 2.2 times of its initial value, the maximum dynamic amplification factor reaches 2.54, which is larger than the value of 2.0 recommended for cable-stayed bridge in PTI codes. If two adjacent hangers on the same side of bridge break one after another, the maximum tension of other hangers exceeds 3.0 times of its initial value. If the safety factor adopted to design hanger is too small, or the hangers have been exposed to corrosion, the bridge may collapse due to breakage of two adjacent hangers.
机译:自锚式悬索桥的梁承受主电缆施加的较大压力。因此,由于吊架的破损而造成的梁的严重损坏可能导致整个桥梁的倒塌。随着时间的增加,由于腐蚀导致其抗力降低,吊架可能会突然断裂。本文采用非线性静,动力分析方法,采用3D有限元模型,研究了混凝土自锚式悬索桥对衣架突然断裂的响应。结果表明,吊架的突然断裂对吊架附近的吊架的张力,大梁的弯矩和扭转力矩,塔架的力矩以及轴承的反作用力有显着影响。从动态分析方法获得的结果与从静态分析方法获得的结果非常不同。吊架断裂产生的吊架最大拉力超过其初始值的2.2倍,最大动态放大系数达到2.54,大于PTI规范中斜拉桥推荐的2.0值。如果桥的同一侧上的两个相邻的衣架彼此折断,则其他衣架的最大张力超过其初始值的3.0倍。如果设计吊架时采用的安全系数过小,或者吊架已受到腐蚀,则由于相邻两个吊架的损坏,桥梁可能会倒塌。

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