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Critical Response of Single-Degree-of-Freedom Damped Bilinear Hysteretic System under Double Impulse As Substitute for Near-Fault Ground Motion

机译:单冲量阻尼双线性滞后系统在双脉冲替代近故障地震动下的临界响应

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A double impulse input is used as a substitute for near-fault earthquake ground motions. A closed-form expression is derived in the maximum elastic-plastic response of a single-degree-of-freedom (SDOF) damped structure with bilinear hysteresis under the a??critical double impulse inputa?? which causes the maximum response for variable impulse interval with the input level kept constant. Since only the free-vibration exists under the double impulse, the energy balance approach for the kinetic energy, hysteretic and strain energies, and damping energy plays a key role in the derivation of the closed-form expression of a complicated damped bilinear hysteretic response. It is shown that the critical elastic-plastic deformation and the corresponding critical impulse timing can be derived depending on the input level. The accuracy of the proposed simplified but smart methodology is confirmed through the comparison with the response analysis to the critical double impulse and the corresponding one-cycle sine wave as a representative for the near-fault earthquake ground motion.
机译:双脉冲输入被用来替代近断层地震地震动。在“临界双脉冲输入”α下,具有双线性滞后的单自由度(SDOF)阻尼结构的最大弹塑性响应中,得出一个封闭形式的表达式。在输入电平保持恒定的情况下,这会导致可变脉冲间隔的最大响应。由于在双脉冲下仅存在自由振动,因此动能,磁滞和应变能以及阻尼能的能量平衡方法在推导复杂的阻尼双线性滞后响应的闭合形式时起着关键作用。结果表明,可以根据输入水平得出临界弹塑性变形和相应的临界脉冲时间。通过与对临界双脉冲和相应的单周期正弦波作为代表的近断层地震地震动的响应分析进行比较,证实了所提出的简化但智能方法的准确性。

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