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Study on Seismic Response Characteristics of Double Cables Suspension Bridge

机译:双索悬索桥地震反应特性研究。

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Damping in double Cables suspension bridge composed of steel reinforcement beams and reinforced concrete tower is non-classical, which leads to coupled equations of motion in main coordinate system. Based on the complex damping theory, the viscous damping ratio is solved, which can be used to describe energy dissipation characteristics of non-classical damping system approximately. Seismic response of double chains suspension bridge is analyzed through an example of double chains suspension bridge, considering the geometric nonlinearity and non-classical damping. And numerical calculation is presented for seismic response subjected to independent effect or combination effect of three orthogonal components of seismic wave. Single cable suspension bridge can be taken as a special case of double cable suspension bridge, after the main cable shape coefficient is introduced. The dynamic responses of double cable suspension bridge and single cable suspension bridge are compared to reveal the characteristics of Seismic Response of double cable suspension bridge. The study of the dynamic responses characteristics of double cable suspension bridge has a positive significance on structural form selection of such type bridge during designing, dynamic performance evaluation and reinforcement design has positive significance.
机译:由钢筋束和钢筋混凝土塔组成的双索悬索桥的阻尼是非经典的,这导致主坐标系中的运动方程耦合。基于复阻尼理论,求解了粘滞阻尼比,可以近似地描述非经典阻尼系统的耗能特性。通过考虑几何非线性和非经典阻尼,以双链悬索桥为例分析了双链悬索桥的地震响应。针对地震波三个正交分量的独立作用或组合作用,给出了地震反应的数值计算方法。在引入主要电缆形状系数之后,可以将单电缆悬索桥作为双电缆悬索桥的特例。比较了双索悬索桥和单索悬索桥的动力响应,揭示了双索悬索桥的地震响应特征。对双索悬索桥动力响应特性的研究对此类桥在设计过程中结构形式的选择具有积极的意义,对动力性能的评估和加固设计具有积极的意义。

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