首页> 外文期刊>Bulletin of engineering geology and the environment >Selection of TBM and geotechnical assessment of a microtunnel in a difficult geological environment: a case of a natural gas pipeline beneath an active landslide (Albania)
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Selection of TBM and geotechnical assessment of a microtunnel in a difficult geological environment: a case of a natural gas pipeline beneath an active landslide (Albania)

机译:在困难的地质环境中,TBM的选择和微隧道的岩土工程评估:以活跃滑坡下的天然气管道为例(阿尔巴尼亚)

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摘要

This present paper presents an adopted methodology for Micro Tunnel Boring Machine (TBM) selection, based on the results of a geological-geotechnical feasibility assessment of a microtunnel, planned for a natural gas pipeline beneath an active landslide, in the Corovode area, southern Albania. This example offers an excellent case study of diverse and demanding engineering geological formations, namely disturbed and sheared types of flysch rock masses, but also recent soil deposits. A tunnel drive will confront materials that may be prone to posing challenges, such as ravelling ground at the microtunnel face, chimney failures, water inflows, as well as deformations. The selection of the appropriate tunnelling method procedure is analysed and presented step by step, addressing all issues that cover the most critical aspects of the selection process. Finally, a geotechnical feasibility assessment is presented as an overall analysis of this work, taking into consideration all the crucial design parameters for several Micro TBM types along the tunnel. Besides the expected rock mass behaviour, the TBM selection is also based on the percentage of fines at the tunnel excavation profile, the permeability and hydraulic head, which is also investigated in this study, while sticky behaviour, clogging risk, presence of obstacles and mixed ground conditions are also taken into account.
机译:本文基于微隧道的地质-地质技术可行性评估结果,提出了一种用于微隧道掘进机(TBM)的选择方法,该评估计划用于阿尔巴尼亚南部科罗沃德地区一个活动滑坡下的天然气管道。该示例为各种要求苛刻的工程地质构造提供了出色的案例研究,这些构造地质构造包括受干扰和剪切的复理岩体,以及最近的土壤沉积。隧道驱动器将遇到可能容易构成挑战的材料,例如微隧道表面的倾斜地面,烟囱故障,水流入以及变形。将分析并逐步介绍适当的隧道方法程序的选择,以解决涵盖选择过程中最关键方面的所有问题。最后,考虑了沿隧道的几种微型TBM类型的所有关键设计参数,提出了一项岩土工程可行性评估,作为对这项工作的整体分析。除预期的岩体行为外,TBM的选择还基于隧道开挖剖面中的细粉百分比,渗透率和水力压头,本研究也对此进行了研究,而粘性行为,堵塞风险,障碍物的存在和混合地面条件也要考虑在内。

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