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Rocking instability of free-standing statues atop slender cantilevers under ground motion

机译:地面运动下细长悬臂上方独立式雕像的摇摆不稳定性

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This paper deals with the dynamic response of free-standing statues on the top surface of slender elastically supported cantilevers subjected to horizontal ground motion. Given that there is no link between the base of the statue and the top surface of the monolithic cantilever the statue is in equilibrium in the vertical direction under its own weight. Attention is focused on the determination of the minimum amplitude ground acceleration which leads to the rocking (overturning) instability of the statue whose mass and rotatory inertia are a priory known. It is assumed that the friction between the base of the statue and the top surface of the cantilever is sufficiently large to prevent sliding so that rocking prevails. After simulating the statue by a rigid block freely supported on the top surface of the elastically restrained monolithic cantilever, a theoretical dynamic analysis of the cantilever-rigid block system under horizontal ground motion is comprehensively presented. Two modes of overturning instability of the free standing rigid block are discussed: instability without or with impact. Criteria for overturning instability of the rigid block associated with the minimum amplitude ground acceleration which leads through the vanishing of the angular velocity to an escaped motion in the phase-plane portrait, are properly assessed.
机译:本文研究了水平地面运动作用下的细长弹性支撑悬臂梁顶面上独立式雕像的动力响应。考虑到雕像的底部和整体悬臂的顶面之间没有联系,雕像在其自身重量的作用下在垂直方向上处于平衡状态。注意力集中在确定最小振幅地面加速度上,该加速度导致导致雕像的摇摆(倾覆)不稳定性,雕像的质量和旋转惯性是已知的。假定雕像的底部和悬臂的顶表面之间的摩擦力足够大,可以防止滑动,从而导致摇摆。通过自由支撑在弹性约束整体式悬臂梁顶面上的刚性砌块对雕像进行模拟后,全面提出了水平地震动下悬臂-刚性砌块系统的理论动力分析。讨论了独立式刚性砌块倾覆不稳定性的两种模式:不带或带冲击的不稳定性。正确评估了与最小振幅地面加速度相关联的翻转刚性块的不稳定性的标准,该最小振幅地面加速度通过角速度的消失导致相平面肖像中的逃逸运动。

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