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A method to design microtunnelling installations in randomly cemented Torino alluvial soil

机译:都灵胶结都灵冲积土中微隧道装置的设计方法

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The paper is devoted to improve the applicability of the microtunnelling technique to the metropolitan area of Torino, by producing useful tools to estimate the magnitude of the jacking forces required by the microtunneller and the pipeline to advance into the ground. The subsoil in the city is characterised by a sand and gravel deposit, ranging from medium to highly dense, down to a depth of 8-10 m; below this depth randomly distributed cemented soil (in cases a conglomerate), due to calcareous deposition processes, is often present. A site scale distinct element numerical model able to simulate the excavation of a microtunnel in the partially cemented soil (from non-cemented to fully cemented) was built to investigate the influence of the cementation degree on soil-pipe interaction and to point out the unstable area eventually generated after the excavation of the microtunnel. This led to the definition of an empirical relationship between jacking forces and the degree of cementation in the ground that can be usefully used at the design analysis stage to predict jacking forces. A case study which exemplifies the suggested procedure is also described.
机译:本文致力于通过产生有用的工具来估算微隧道器和管道进入地下所需的顶升力的大小,从而提高微隧道技术在都灵都会区的适用性。该市的地下土壤以砂砾砾石为特征,沉积范围从中等到高度稠密,深度达8-10 m。在此深度以下,由于钙质沉积过程,经常会出现随机分布的胶结土壤(在砾岩的情况下)。建立了能够模拟部分胶结土(从非胶结土到完全胶结)中的微隧道开挖的场地尺度离散元数值模型,以研究胶结度对土管相互作用的影响并指出不稳定因素。微隧道开挖后最终产生的区域。这导致定义了顶升力与地面胶结程度之间的经验关系,该关系可在设计分析阶段用于预测顶升力。还介绍了一个案例研究,该案例例证了建议的过程。

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