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Closed-Form Critical Earthquake Response of Elastic–Plastic Structures on Compliant Ground under Near-Fault Ground Motions

机译:近断层地震动下顺应地面上弹塑性结构的闭合形式临界地震响应

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摘要

The double impulse is introduced as a substitute of the fling-step near-fault ground motion. A closed-form solution of the elastic–plastic response of a structure on compliant (flexible) ground by the “critical double impulse” is derived for the first time based on the solution for the corresponding structure with fixed base. As in the case of fixed-base model, only the free vibration appears under such double impulse and the energy approach plays an important role in the derivation of the closed-form solution of a complicated elastic–plastic response on compliant ground. It is remarkable that no iteration is needed in the derivation of the critical elastic–plastic response. It is shown via the closed-form expression that in the case of a smaller input level of double impulse to the structural strength, as the ground stiffness becomes larger, the maximum plastic deformation also becomes larger. On the other hand, in the case of a larger input level of double impulse to the structural strength, as the ground stiffness becomes smaller, the maximum plastic deformation becomes larger. The criticality and validity of the proposed theory are investigated through the comparison with the response analysis to the corresponding one-cycle sinusoidal input as a representative of the fling-step near-fault ground motion. The applicability of the proposed theory to actual recorded pulse-type ground motions is also discussed.
机译:引入了双重冲动,以代替突跳近断层地面运动。首次基于对应的具有固定基础的结构的解,首次得出了结构在“柔韧性”地面上通过“临界双脉冲”产生的弹塑性响应的封闭形式的解。像固定基模型一样,在这种双重冲击下只有自由振动出现,而能量方法在推导柔顺地面上复杂弹塑性响应的闭式解中起着重要作用。值得注意的是,在临界弹塑性响应的推导中不需要迭代。通过闭合形式表示,在对结构强度的双重冲击的较小输入水平的情况下,随着地面刚度变大,最大塑性变形也变大。另一方面,在对结构强度的双重冲击的较大输入水平的情况下,随着地面刚度变小,最大塑性变形变大。通过与相应的单周期正弦输入作为跳阶近断层地面运动的代表的响应分析进行比较,研究了所提出理论的重要性和有效性。还讨论了所提出的理论对实际记录的脉冲型地面运动的适用性。

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