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Dynamic Performance and Anti-earthquake Analysis of Cable-stayed Arch Bridge

机译:斜拉拱桥动态性能与抗震分析

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The strength, stiffness, and stability check calculations and the effect of earthquakes should be considered in the design of cable-stayed arch bridges with collaborative systems. This study aims to investigate the dynamic performance and structural response of cable-stayed arch bridges under seismic action. The space analysis model is enhanced of the Xiang Feng River Bridge using finite element software Midas Civil, whose lower foundation considers the effects of piles and soil. Firstly the vibration period, vibration frequency, and modal characteristics are computed, thus the dynamic performance is summarized of the bridge. Then, a proper seismic wave is selected according to engineering conditions and in terms of three orthogonal directions: inputting the adjusted El Centro seismic wave, considering Rayleigh damping, and calculating via the Newmark method. Furthermore, a time-history response analysis under the action of one-dimensional and multidimensional earthquake is performed. Lastly, the results of the response analysis is compared and the behavior characteristics of arch bridge is summarized under seismic action. The results show that the transverse stability problem of bridges is prominent and should be the focus of antiearthquake fortification, the inclined cable tower of this bridge is not conducive to the earthquake resistance of the structure in comparison with the vertical cable tower. and the influence of horizontal and vertical earthquake actions should be considered in antiearthquake designs.
机译:使用协作系统,应考虑强度,僵硬和稳定性检查计算和地震的效果。本研究旨在调查地震作用下缆绳拱桥的动态性能和结构响应。空间分析模型采用有限元软件Midas民用的湘丰河桥增强,其较低基础考虑了桩和土壤的影响。首先,计算振动周期,振动频率和模态特性,因此桥的动态性能总结。然后,根据工程条件和三个正交方向选择适当的地震波:考虑瑞利阻尼,并通过纽马克方法计算调整的EL Centro地震波。此外,执行在一维和多维地震作用下的时间历史响应分析。最后,比较了响应分析的结果,并在地震作用下总结了拱桥的行为特征。结果表明,桥梁的横向稳定性问题突出,应该是抗eArthquake强化的焦点,该桥的倾斜缆顶不利于与垂直缆顶相比的结构的地震阻力。在抗eArthquake设计中应考虑水平和垂直地震作用的影响。

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