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Effect of peak ground parameters on the nonlinear seismic response of long lined tunnels

机译:峰值地面参数对长衬砌隧道非线性地震响应的影响

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摘要

The response mechanism of tunnels under earthquake loads is a critical issue in tunnels located in seismically active regions. This study aims to investigate the seismic response and damage sensitivity of tunnels under earthquake motions with different peak ground acceleration, velocity and displacement (PGA, PGV and PGD). Based on the design acceleration response spectrum (ARS), four groups of total 40 artificial accelerograms are synthesized with specified PGA, PGV and PGD. In addition, for considering the wave travelling effect on the tunnel axial response, an obliquely incident method for P waves is developed by using the equivalent nodal force method. Then, the nonlinear response of tunnels subjected to artificial accelerograms with different incident angles are simulated, respectively. The numerical results indicate that the PGV and PGA have accretion effect on the seismic response of the tunnel. However, the impact of PGD on the tunnel earthquake response is less evident. The PGV has obvious incremental effect on the dynamic response of tunnels subjected to earthquake P waves with large incident angles. Compared with PGV, the PGA intends to increase the response of tunnels significantly under P waves with small incident angles. Thus, it is important to take the PGA and PGV into account during seismic analysis and design for tunnels.
机译:地震作用下隧道的响应机制是地震活跃地区隧道的关键问题。这项研究的目的是研究在具有不同峰值加速度,速度和位移(PGA,PGV和PGD)的地震运动下隧道的地震响应和损伤敏感性。基于设计加速度响应谱(ARS),使用指定的PGA,PGV和PGD合成了四组共40个人工加速度图。另外,考虑到波传播对隧道轴向响应的影响,采用等效节点力法发展了一种斜向入射P波的方法。然后,分别模拟了具有不同入射角的人工加速度作用下的隧道的非线性响应。数值结果表明,PGV和PGA对隧道的地震响应有增生作用。但是,PGD对隧道地震响应的影响不太明显。 PGV对大入射角地震P波隧道的动力响应具有明显的增量影响。与PGV相比,PGA旨在显着提高入射角较小的P波下隧道的响应。因此,在隧道的地震分析和设计过程中考虑PGA和PGV是很重要的。

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