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Deck-tower interaction in the transverse seismic response of cable-stayed bridges and optimum configurations

机译:斜拉桥的横向地震响应中的甲板-塔架相互作用和最佳配置

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Modern design solutions in cable-stayed bridges give a significant importance to the seismic response in the transverse direction. This work is focused on the dynamic interaction between the deck and the towers, exploring the key role of different vibration modes. An extensive parametric analysis is proposed to address the influence of the main span length, the tower geometry, the cable-system arrangement, the width and height of the deck and the soil conditions. It is demonstrated that the vibration modes that govern the seismic response of cable-stayed bridges in the transverse direction involve the interaction between the tower and the deck, but the order of these modes and the parts of the deck that are affected change with the main span length. It is also observed that the interaction between the deck and the towers during the earthquake is maximised if their isolated vibration frequencies are close to each other, leading to a significantly large seismic demand. Analytical expressions are proposed to obtain the critical frequencies of the towers for which these interactions arise, and recommendations are given to define the tower geometry in order to avoid such problematic scenarios. (C) 2016 Elsevier Ltd. All rights reserved.
机译:斜拉桥的现代设计解决方案非常重视横向地震响应。这项工作着重于甲板与塔架之间的动态相互作用,探讨了不同振动模式的关键作用。提出了广泛的参数分析,以解决主跨长度,塔架几何形状,电缆系统布置,甲板的宽度和高度以及土壤条件的影响。结果表明,控制斜拉桥在横向方向上地震反应的振动模式涉及塔架和甲板之间的相互作用,但是这些振型的阶次以及受影响的甲板部分随主力的变化而变化。跨度长度。还可以观察到,如果地震波之间的隔离振动频率彼此接近,则甲板与地震塔之间的相互作用会最大化,从而导致巨大的地震需求。提出了解析表达式来获得发生这些相互作用的塔架的临界频率,并提出了定义塔架几何形状的建议,以避免出现此类问题。 (C)2016 Elsevier Ltd.保留所有权利。

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