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Geological assessment for tunnel excavation under river with shallow overburden using surface site investigation data and electrical resistivity tomography

机译:浅层覆盖物隧道挖掘的地质评估,浅层覆盖使用表面现场调查数据和电阻率断层扫描

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Tunnelling is a challenging task as many geotechnical uncertainties involved during construction, especially under a river crossing with shallow overburden. This study focussed on geological assessment for the New Austrian Tunneling Method excavation that crosses under Kerau River with shallow overburden. 3D filtered tunnel models using Boolean filter for rock mass weathering grade, rock quality designation, and Lugeon value are developed. Results predict that 53.3% of the tunnel excavation under the Kerau River crossing are highly weathered rocks (Grades III and IV), and 64.51% are in the moderately to highly fractured zone (0%-75% RQD) along the roof of the tunnel granitic bedrock. The Lugeon value models show that 71.64% of the excavating rocks possess a Lugeon value of 5-50 (6-60 x 10(-5) cm/s), which denotes considerably high permeability. 2D electrical resistivity tomography is used to verify the permeability results from the Lugeon test. (C) 2019 Elsevier Ltd. All rights reserved.
机译:隧道是一个具有挑战性的任务,以及在建筑过程中涉及的许多岩土性不确定性,特别是在与浅层覆盖层的河流下。本研究侧重于新奥地利隧道方法挖掘地质评估,浅层岩土河横跨岩土河流。 3D过滤隧道模型使用布尔过滤器进行岩石大量耐候级,岩石质量指定和洛氏贷龙价值。结果预测,克劳河交叉口下的53.3%的隧道挖掘是高度风化的岩石(III等级和IV),64.51%在隧道屋顶中适度地以高度裂缝的区域(0%-75%RQD)。花岗岩基岩。洛氏值模型表明,71.64%的挖掘岩石具有5-50(6-60×10(-5)cm / s)的距离值,表示具有相当高的渗透性。 2D电阻率断层扫描用于验证Lugeon测试的渗透率。 (c)2019年elestvier有限公司保留所有权利。

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