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首页> 外文期刊>Journal of Engineering Mechanics >Dynamics of seismic pounding at expansion joints of concrete bridges
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Dynamics of seismic pounding at expansion joints of concrete bridges

机译:混凝土桥梁伸缩缝的震荡动力学

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Motivated by a need to understand the effects of earthquake-induced pounding at thermal expansion joints of concrete bridges, the first part of this paper deals with collinear impact between concrete rods of the same cross section but different lengths. It is shown that (1) the coefficient of restitution between rods depends only on the length ratio and the damping ratio of the rod material; and (2) the duration of impact is equal to the fundamental period of axial vibration of the shorter rod. These results are then used in the second part of this paper to formulate a realistic yet simple analysis of seismic pounding in concrete bridges. In determining a suitable value of the coefficient of restitution, use is made of the strong-motion data recorded on a concrete bridge that experienced significant pounding during recent California earthquakes. It is shown that (1) seismic pounding generally reduces the column forces; (2) large impact forces generated in the superstructure are not transmitted to the bridge columns and foundations; and (3) pounding does not increase the longitudinal separation at the hinges. [References: 22]
机译:由于需要了解混凝土桥梁热膨胀缝处地震引起的撞击的影响,本文的第一部分处理了相同横截面,不同长度的混凝土杆之间的共线冲击。结果表明:(1)杆之间的回复系数仅取决于杆材料的长度比和阻尼比; (2)冲击的持续时间等于短杆轴向振动的基本周期。然后,将这些结果用于本文的第二部分,以对混凝土桥梁的地震震荡进行实际而简单的分析。在确定合适的恢复系数值时,要利用记录在混凝土桥梁上的强运动数据,该桥梁在最近的加利福尼亚地震中遭受了很大的冲击。结果表明:(1)地震冲击通常会减小柱力; (2)上部结构产生的较大的冲击力没有传递到桥柱和基础上。 (3)敲打不会增加铰链的纵向间距。 [参考:22]

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