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Dynamic response analysis of a building structure subjected to ground shock from a tunnel explosion

机译:隧道爆炸引起地震动的建筑物结构动力响应分析

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Dynamic responses of a multi-storey building without or with a sliding base-isolation device to ground shock induced by an in-tunnel explosion are numerically analyzed in this paper. The effect of an adjacent tunnel in between the building and the explosion tunnel, which affects ground shock propagation, is also considered in the analysis. Different modeling methods, such as the eight-node iso-parametric finite element and mass-lumped system, are used to establish the coupling model consisting of the two adjacent tunnels, the surrounding soil medium with the Lysmer viscous boundary condition and the multi-storey building with or without the sliding base-isolation device. In numerical calculations, a continuous friction model, which is different from the traditional Coulomb friction model, is adopted to improve the computational efficiency and reduce the accumulated errors. Some example analyses are subsequently performed to study the response characteristics of the building and the sliding base-isolation device to ground shock. The effect of the adjacent tunnel in between the building and the explosion tunnel on the ground shock wave propagation is also investigated in the study. The final conclusions based on the numerical results will provide some guidance in engineering practice.
机译:本文对不带或带滑动隔震装置的多层建筑物对隧道内爆炸引起的地面震动的动力响应进行了数值分析。分析中还考虑了建筑物与爆炸隧道之间相邻隧道的影响,该影响会影响地震动的传播。使用八节点等参有限元和质量集总系统等不同的建模方法来建立由两个相邻隧道,具有Lysmer粘性边界条件的周围土壤介质和多层结构组成的耦合模型。带有或不带有滑动基座隔离装置的建筑物。在数值计算中,采用了不同于传统库仑摩擦模型的连续摩擦模型,以提高计算效率并减少累积误差。随后进行一些示例分析,以研究建筑物和滑动式基础隔离装置对地面震动的响应特性。在研究中,还研究了建筑物与爆炸隧道之间相邻隧道对地面冲击波传播的影响。基于数值结果的最终结论将为工程实践提供一些指导。

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