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Subsurface geological-geotechnical modelling to sustain underground civil planning

机译:地下地质工程建模以维持地下土木工程

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The aim of the paper was to document the use of 3D subsurface geological-geotechnical modelling to optimise the planning and development of subsurface structures in city areas. The proposed procedure was applied to the analysis of the subsoil of the City of Turin (Northern Italy). The results of more than 300 boreholes were analysed to develop a model of the geological setting up to a depth of 60 m from the surface. The cementation variability of the alluvial sediments was also spatially described and the influence of this aspect on the soil excavation resistance was highlighted. In order to face the need of archiving, correlating and analysing a large amount of data, a 3D GIS (Geographical Information System) was used to better manage the model and to achieve a useful methodological reference that would be available for the planning and construction of future underground works. A portion of the geological model, related to the centre of the city of Turin (Italy), was chosen to set up a more detailed geotechnical model, based on laboratory tests and back-analysis procedures, as data input for some engineering applications. Two case studies were performed concerning: - analyses used to forecast the subsidence induced on the ground surface by the excavation of the metro line; - the influence of the works of the metro line on the new Underground Railway Link (interference between two important underground works). A comparison between the forecasts of the degree of cementation, supplied by the 3D model along a metro tunnel tract, and the excavation specific energy effectively absorbed by the head of the boring machine is reported to testify the reliability of the model of the subsoil of Turin centre. This comparison shows the good reliability of the model and its potential to choose of the optimal boring machines for the future development of the Underground Metro System in Turin.
机译:本文的目的是记录3D地下地质-地质技术模型的使用,以优化城市地区地下结构的规划和开发。拟议的程序应用于都灵市(意大利北部)的地下土壤分析。分析了300多个钻孔的结果,以建立一个距地面60 m深度的地质构造模型。在空间上还描述了冲积沉积物的胶结变化性,并着重指出了这方面对土壤开挖阻力的影响。为了满足存档,关联和分析大量数据的需求,使用了3D GIS(地理信息系统)来更好地管理模型并获得可用于规划和构建数据的有用方法论参考。未来的地下工程。选择了一部分与意大利都灵市中心有关的地质模型,以基于实验室测试和反向分析程序建立更详细的岩土模型,作为某些工程应用的数据输入。进行了两个案例研究:-用于预测地铁线路开挖在地面上引起的沉降的分析; -地铁线路的工程对新的地下铁路的影响(两个重要地下工程之间的干扰)。据报道,沿地铁隧道道的3D模型提供的水泥固结度预测与镗床机头有效吸收的开挖比能之间的比较被证明了都灵地下土模型的可靠性中央。比较结果表明,该模型具有良好的可靠性,并具有为都灵地下地铁系统的未来发展选择最佳镗床的潜力。

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