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Analysis of stress redistribution in soil and earth pressure on tunnel lining using the discrete element method

机译:隧道衬砌土土压力应力重分布的离散元分析

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This paper analyzes the stress redistribution in the surrounding soil and the earth pressure acting on the shield tunnel lining due to tunneling. The construction of a 6 m diameter tunnel buried at a 12 m depth with a gap of 4 cm with the surrounding soil is modeled using DEM, utilizing the equivalent mass method. The principal stresses and their inclination angle in the surrounding soil are examined together with the earth pressure acting on the tunnel lining. Soil arching and unloading effects due to tunneling are also investigated. Furthermore, the construction of the tunnel at different buried depths and with dif­ferent tail gaps is modeled. All the comparisons show that increasing the buried depth up to 12 m and the tail gaps up to 8 cm result in a significant soil arching effect. The soil arching effect ceases to increase for buried depths of more than 12 m and for tail gaps of more than 8 cm.
机译:本文分析了隧道周围环境中应力的重新分布以及作用在盾构隧道衬砌上的土压力。使用等效质量法,使用DEM对在12 m深度处埋入的,与周围土壤有4 cm间隙的6 m直径隧道的构造进行建模。考察了周围土壤中的主应力及其倾角以及作用在隧道衬砌上的土压力。还研究了由于隧道效应引起的土拱效应和卸载效应。此外,还对隧道在不同埋深和不同尾隙的构造进行了建模。所有比较结果表明,将埋深增加到12 m,将尾部间隙增加到8 cm,会产生明显的土拱效应。对于超过12 m的埋深和超过8 cm的尾部间隙,土拱效应不再增加。

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