4.7 Article

Seismic vulnerability of circular tunnels in sand

期刊

GEOTECHNIQUE
卷 71, 期 11, 页码 1056-1070

出版社

EMERALD GROUP PUBLISHING LTD
DOI: 10.1680/jgeot.19.SiP.024

关键词

dynamics; earthquakes; limit state design/analysis; numerical modelling; tunnels & tunnelling

资金

  1. Engineering and Physical Sciences Research Council - Global Challenge Research Funding -Higher Education Funding Council for England
  2. EPSRC [EP/N03435X/1] Funding Source: UKRI

向作者/读者索取更多资源

This paper focuses on assessing the seismic fragility curves of circular tunnels under moderate to severe earthquakes to enhance the reliability of risk assessment for underground infrastructural networks. Non-linear dynamic analyses were conducted on different tunnel and soil configurations using the finite-difference method implemented in Flac2D software. The fragility curves showed a satisfying matching with empirical ones based on observed seismic damage on tunnels.
The paper is focused on the assessment of seismic fragility curves for circular tunnels under moderate to severe earthquakes with the aim of improving the reliability of the risk assessment of underground infrastructural networks. Non-linear two-dimensional dynamic analyses were performed on different tunnel and soil configurations by using the finite-difference method implemented in Flac2D software. The applied input motions were selected considering their amplitude and frequency content variability. The response accelerations and predominant frequencies computed at ground level, above the tunnel, were compared with the corresponding free-field results to distinguish the effects attributable to the tunnel presence from those due to the site amplification. Tunnel safety was assessed through fragility curves, taking into account the dependence of tunnel lining bending resistance on the axial force variation during the earthquake. The more effective intensity measure was investigated correlating the tunnel performance to peak ground accelerations and peak ground velocities computed at the ground level and at the bedrock depth, respectively. The resulting fragility curves showed a satisfying matching with the empirical ones, generated on the basis of the observed seismic damage on tunnels.

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