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Analytical study of the coupled motions of decks in skew bridges with the deck-abutment collision

机译:甲板桥面碰撞斜桥甲板耦合运动的分析研究

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It has been observed from failures of highway bridges during major earthquakes that skew bridges are among the most vulnerable to seismic loading. It has been shown that the coupling between the translational motions of the deck and the collision of the deck with the abutments are two major factors influencing the vulnerability of skew bridges. This paper studies the influence of deck-abutment collision (seismic pounding) on the coupled motions of decks of skew bridges during strong earthquakes using an analytical approach. A three-degree-of-freedom model is presented to study key dynamic features of skew bridges. It is assumed that the deck of the model is rigid and the columns remain elastic during the ground motion. Contact planes between the deck and the abutments are idealized by several contact points pairwise arrayed at the end-span expansion joints. The mechanism of energy absorption and dissipation during the contact duration is simulated through the implementation of a nonlinear contact element between the contact points. A parametric study has been carried out by varying different parameters, including the skew angle (), the size of the gap between the deck and the abutments at the end-span expansion joints (gap), and the normalized stiffness eccentricity along the x-axis (e(x)/r). The results of this study show that the transverse displacements of acute corners of the deck and the rotation of the deck about the mass center noticeably increase with the increases of and e(x)/r, and with the decrease of the gap.
机译:在大地震期间,从公路桥梁的故障观察到倾斜桥梁是最容易遭受地震载荷的影响。已经表明,甲板的平移运动与甲板的碰撞之间的耦合是影响围栏脆弱脆弱性的两个主要因素。本文采用分析方法研究了甲板 - 邻接碰撞(地震冲突(地震冲突)对抗杆桥甲板耦合运动的影响。提出了三维自由度模型,以研究歪斜桥的关键动态特征。假设模型的甲板是刚性的,并且柱在地面运动期间保持弹性。甲板和支座之间的接触平面通过在端跨伸缩接头处成对排列的几个接触点的理想化。通过在接触点之间的非线性接触元件的实施来模拟接触持续时间期间的能量吸收和耗散机理。通过改变不同的参数来进行参数研究,包括倾斜角度(),甲板和端部伸展关节(间隙)之间的间隙的尺寸,以及沿X-沿X-的归一化刚度偏心率的凸起​​偏心轴(e(x)/ r)。该研究的结果表明,甲板的急性角的横向位移和甲板的旋转围绕质量中心的旋转明显增加,随着e(x)/ r的增加,并且随着间隙的降低而显着增加。

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