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Modelling the efficiency of a drainage gallery work for a large landslide with respect to hydrogeological heterogeneity

机译:针对水文地质异质性对大型滑坡的排水廊工程效率进行建模

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This study describes transient hydrogeological and geomechanical models realized jointly in 2006 by the Geolep office (Géologie de l'Ecole Polytechnique) of the Polytechnical School of Lausanne (EPFL) and GeoMod SA within the framework of the stabilization work of the La Frasse landslide (Vaud, Switzerland). These models evaluate the impact of a deep drainage gallery with subvertical drainage boreholes towards the surface in terms of reduction of the deformation velocities and increase of the landslide's factor of safety. The paper presents the effect of different pipe spacing of the drainage system. Considering the local heterogeneities, the results show that a mean spacing between the drainage boreholes of the order of 10 m is sufficient to control the temporal head fluctuations between the wells within a range of a few metres. Moreover, this solution induces a strong diminution of the predicted displacements during a specific crisis, from 101 cm for the model without drainage to around 14 cm for the drained model, and a significant gain of stability (from a factor of safety (FoS) of 1.05 to 1.30).
机译:这项研究描述了洛桑理工学院(EPFL)的Geolep办公室(Géologiede l'Ecole Polytechnique)和GeoMod SA在La Frasse滑坡(Vaud)的稳定化工作框架内于2006年共同实现的瞬态水文地质和地质力学模型,瑞士)。这些模型通过降低变形速度和增加滑坡的安全系数来评估深排水沟对地下的影响。本文介绍了排水系统不同管距的影响。考虑到局部的非均质性,结果表明,排水孔之间的平均间距约为10 m,足以将井之间的瞬时水头波动控制在几米的范围内。此外,此解决方案可在特定危机期间大幅减少预测的位移,从无排水模型的101厘米到排水模型的14厘米左右,并显着提高了稳定性(从安全系数(FoS) 1.05至1.30)。

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