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Critical Earthquake Response of Elastic–Plastic Structures Under Near-Fault Ground Motions (Part 1: Fling-Step Input)

机译:弹塑性结构在近断层地震动下的临界地震响应(第1部分:跳跃步输入)

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摘要

The double impulse input is introduced as a substitute of the fling-step near-fault ground motion and a closed-form solution of the elastic–plastic response of a structure by the “critical double impulse input” is derived. Since only the free-vibration appears under such double impulse input, the energy approach plays an important role in the derivation of the closed-form solution of a complicated elastic–plastic response. It is shown that the maximum inelastic deformation can occur either after the first impulse or after the second impulse depending on the input level. The validity and accuracy 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. Since the critical input means the resonant case, the present theory dealing with the resonant response should be applied to buildings except very flexible ones.
机译:引入双脉冲输入,以代替侧移近断层地面运动,并通过“临界双脉冲输入”得出结构的弹塑性响应的闭式解。由于在这种双脉冲输入下只有自由振动出现,因此能量方法在推导复杂弹塑性响应的闭式解中起着重要作用。结果表明,最大的非弹性变形可能在第一脉冲之后或第二脉冲之后发生,具体取决于输入水平。通过与相应的一周期正弦输入作为响应的近冲断层地震动代表进行比较,研究了所提出理论的有效性和准确性。由于关键输入意味着发生共振情况,因此关于共振响应的本理论应适用于除了非常灵活的建筑物以外的建筑物。

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