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Three-dimensional analysis of excavation face stability of shallow tunnels

机译:浅埋隧道开挖面稳定性的三维分析

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Several studies have been focused on minimizing construction risks of underground works. However, additional studies regarding excavation face stability, which has great influence on global performance of shallow tunnels, will offer more security criteria to engineers. The aim of this work is to compare the results from an existing analytical and a numerical method in assessing the behavior of the excavation face subjected to different overburden depth and ground conditions. Typical parameters of shallow soils were considered for all simulations. The analytical method was applied to assess the excavation face pressure for different tunnel covers. Numerical methods were applied using ABAQUS 3D (R) finite elements software, which considered a continuous, homogeneous medium in a 6-meter-wide tunnel excavated at different depths, and assessed the need for support and stabilization pressure on the face. Furthermore, the influence of a well on the excavation line was also considered for such assessment. As result, excavation face was defined as stable by the analytical method; nevertheless, it was obtained a very low safety factor. On the other hand, results from the numerical method showed the need to apply pressure on the excavation face. Those limit support pressure values at tunnel face showed a direct correlation with the increase of cover-to-tunnel diameter ratio. Finally, the numerical method showed a more realistic result when compared with the analytical method.
机译:一些研究集中在最小化地下工程的施工风险上。但是,有关挖掘工作面稳定性的其他研究对浅埋隧道的整体性能影响很大,这将为工程师提供更多的安全标准。这项工作的目的是比较现有分析方法和数值方法在评估不同覆盖层深度和地面条件下的工作面行为时的结果。所有模拟都考虑了浅层土壤的典型参数。该分析方法用于评估不同隧道盖的开挖面压力。使用ABAQUS 3D(R)有限元软件应用了数值方法,该软件考虑了在不同深度开挖的6米宽隧道中的连续均质介质,并评估了对面部支撑和稳定压力的需求。此外,还考虑了井对开挖线的影响以进行这种评估。结果,通过分析方法将开挖面定义为稳定。但是,它获得了非常低的安全系数。另一方面,数值方法的结果表明需要在开挖面上施加压力。隧道端面的极限支撑压力值与覆盖层与隧道直径之比的增加有直接关系。最终,与解析方法相比,数值方法显示出更现实的结果。

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