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

机译:地震动作用下细长粘弹性柱顶上独立式雕像的摇摆不稳定性

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The highly complex rocking response of free-standing statues atop multi-drum columns underground excitation resulting in insuperable difficulties for obtaining reliable solution is reexamined analytically. This is achieved after simulating the columns by monolithic viscoelastic cantilevers having structural damping, based on experiments, equivalent to the energy dissipation due to impact and sliding of multi-drum columns. Subsequently, the conditions of rocking (overturning) instability of free-standing rigid blocks (representing the statues) after their uplift from the top surface of the laterally vibrating cantilevers, are established, including overturning with or without impact. Attention focuses on the minimum amplitude ground acceleration which leads to an escaped motion through the vanishing of the angular velocity and acceleration. Maximization of such a minimum amplitude (implying stabilization) of the rigid block is obtained by seeking the optimum combination of values of the slenderness ratio of the column and its height. Analytically derived results based on linearised analyses are in excellent agreement with those obtained via nonlinear numerical analyses.
机译:通过分析重新检查了独立雕像在地下多鼓柱上的高度复杂的摇摆响应,导致难以获得可靠解决方案。根据实验,在通过具有结构阻尼的整体式粘弹性悬臂模拟柱子之后,即可实现此目的,等效于由于多鼓柱的撞击和滑动而产生的能量耗散。随后,确定了独立刚性块(代表雕像)在从横向振动悬臂的上表面升起后的摇摆(倾覆)不稳定性的条件,包括有或无冲击的倾覆。注意集中在最小振幅的地面加速度上,该加速度通过角速度和加速度的消失而导致逃逸的运动。通过寻找柱的细长比及其高度的值的最佳组合,可以使刚性块的最小振幅最大化(暗示稳定)。基于线性化分析的分析得出的结果与通过非线性数值分析获得的结果非常一致。

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