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Seismic damage assessment of mountain tunnel: A case study on the Tawarayama tunnel due to the 2016 Kumamoto Earthquake

机译:山地隧道的震害评估:以2016年熊本地震为例的太原山隧道为例

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摘要

The Kumamoto Earthquake with magnitude of 7.3(Mj) on April 16 and 6.5(Mj) on April 14, 2016 have triggered numerous damages to the Tawarayama Tunnel in Kumamoto Prefecture, Japan. Distribution and characteristics of these seismic damages were investigated and summarized to assess potential influencing factors. Seismic damages are categorized into five patterns as follows: lining cracks, spalling and collapse of concrete lining, construction joint damage, pavement damage and groundwater leakage. Lining cracks can be further classified into ring crack, longitudinal crack, transverse crack and inclined crack. Site investigation showed the primary seismic damage was lining crack, especially ring crack. In special, an interesting phenomenon was observed that ring cracks occurred with an estimated average spacing of 10.0 m in 23.4% spans of the Tawarayama Tunnel. This results from the interaction between seismic wave and special geological conditions that dense Andesite and crushed Andesite around the Tawarayama Tunnel appear in tilt alternately with space between 10 m and 20,m. Following these analysis, some recommendations were proposed for future tunnel planning.
机译:熊本地震于4月16日发生7.3(Mj),2016年4月14日发生6.5(Mj),对日本熊本县的田原山隧道造成了无数破坏。对这些地震破坏的分布和特征进行了调查和总结,以评估潜在的影响因素。地震破坏可分为五种类型:衬砌裂缝,混凝土衬砌剥落和塌陷,施工缝破坏,路面破坏和地下水渗漏。衬里裂纹可进一步分为环裂纹,纵向裂纹,横向裂纹和倾斜裂纹。现场调查表明,主要的地震破坏是衬砌裂缝,尤其是环形裂缝。特别地,观察到一个有趣的现象,即在Tawarayama隧道的23.4%跨度中发生了环裂纹,估计平均间距为10.0 m。这是由于地震波与特殊地质条件之间的相互作用导致的,在田原山隧道周围密集的安山岩和破碎的安山岩在空间10 m至20,m之间交替出现倾斜。经过这些分析,为将来的隧道规划提出了一些建议。

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