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New Equivalent Linear Impact Model for Simulation of Seismic Isolated Structure Pounding against Moat Wall

机译:Mo沟墙隔震结构模拟的新型等效线性冲击模型

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Base-isolated buildings subjected to extreme earthquakes or near-fault pulse-like earthquakes can exceed their design gap distance and impact against the surrounding moat wall. Based on equating energy dissipation and maximum collision compression deformation of isolated structure with the Hertz-damp model and Kevin-Voigt model in the process of collision, an equivalent linear impact model (ELIM) is proposed to better predict impact response of seismic isolated structure. The formula of the equivalent linear stiffness of ELIM is theoretically derived. The effectiveness of ELIM is verified by comparing the results of numerical analyses with the results of pounding experiments. Four near-fault earthquakes are selected to validate rationality and accuracy of the proposed model using numerical analysis. The results indicate that the proposed linear model can nearly capture impact behavior of isolated structure in simulating the pounding-involved structural response.
机译:遭受极端地震或近断层脉冲状地震的基础隔离建筑可能会超出其设计间隙距离,并会冲击周围的护城河墙。基于Hertz-damp模型和Kevin-Voigt模型,在隔震结构的能量耗散和最大碰撞压缩变形相等的基础上,提出了等效线性碰撞模型(ELIM),以更好地预测隔震结构的碰撞响应。理论上推导了ELIM的等效线性刚度公式。 ELIM的有效性通过将数值分析的结果与冲击实验的结果进行比较来验证。通过数值分析,选择了四次近断层地震来验证所提出模型的合理性和准确性。结果表明,所提出的线性模型可以在模拟碰撞涉及的结构响应中几乎捕获孤立结构的冲击行为。

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