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首页> 外文期刊>Engineering Geology >Geophysical investigation of a large landslide in glaciolacustrine clays in the Trieves area (French Alps)
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Geophysical investigation of a large landslide in glaciolacustrine clays in the Trieves area (French Alps)

机译:Trieves地区(法国阿尔卑斯山)冰川湖粘土中的大型滑坡的地球物理研究

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Slope movements in clay deposits are spread all over the world and result from complex deformation processes, including internal strains in the landslide body and slipping along rupture surfaces. Such mass movements are likely to generate changes in the geophysical parameters characterizing the ground, which can be used to map the landslide body. In the last decade, geophysical techniques have been increasingly used for landslide investigation purposes. However, the success of any geophysical technique is overall controlled by the existence of a geophysical contrast differentiating the body to be mapped. For landslides affecting thick clay materials (from soft clay to shale or marl), electrical and seismic techniques have been mainly applied in the past. In this study, we attempt to physically characterize the deformation within a large slide (Avignonet) affecting laminated clays which were deposited in a glacially dammed lake during the Wurrn period. Clay deposits, which cover an area of 300 km~2 south of Grenoble (French Alps) and have a maximum thickness of 200 m, overlay compact alluvial layers and marly limestone of Mesozoic age. Piezometric data at Avignonet show that the water table is very shallow, implying that the slide developed in saturated clay. Several seismic and electrical profiles were performed in order to tentatively correlate the variations of P-wave (Vp) velocity, S-wave velocity (Vs) and electrical resistivity with geotechnical data and morphological observations. In such saturated and fine material, it turned out that only the S-wave velocity exhibits significant variations with the displacement rates and the morphological features. Vs values at shallow depth were found to be inversely correlated with displacement rates measured by GPS, with a division by at least a factor of 2 between the zones unaffected and strongly deformed by the landslide. These results suggest that Vs mapping could provide valuable information on the deformation state of the clay material and that the evolution of Vs with time could be used as an indicator for characterizing the landslide activity in the subsurface, including the evolution into a flow.
机译:粘土沉积物中的斜坡运动遍布世界各地,是由复杂的变形过程引起的,包括滑坡体中的内部应变和沿破裂面的滑移。这种质量运动很可能会产生表征地面的地球物理参数的变化,这些变化可用于绘制滑坡体图。在过去的十年中,地球物理技术已越来越多地用于滑坡调查目的。但是,任何一种地球物理技术的成功都由能够区分待测物体的地球物理对比度的存在来总体控制。对于影响厚黏土材料(从软黏土到页岩或泥灰岩)的滑坡,过去主要应用了电气和地震技术。在这项研究中,我们试图对大滑坡(Avignonet)内的变形进行物理表征,以影响在Wurrn时期沉积在冰川堰塞湖中的叠层粘土。粘土矿床覆盖格勒诺布尔(法国阿尔卑斯山)以南300 km〜2,最大厚度为200 m,覆盖了致密的冲积层和中生代的马来灰岩。 Avignonet处的测压数据表明,地下水位很浅,表明滑坡在饱和粘土中发育。为了将P波(Vp)速度,S波速度(Vs)和电阻率的变化与岩土数据和形态学观测值暂时关联起来,进行了一些地震和电剖面。事实证明,在这种饱和的精细材料中,只有S波速度随位移率和形貌特征而显示出显着变化。发现浅水深处的Vs值与GPS测量的位移率成反比,在未受滑坡影响和强烈变形的区域之间至少要除以2。这些结果表明,Vs映射可以提供有关粘土材料变形状态的有价值的信息,并且Vs随时间的演变可以用作表征地下滑坡活动(包括演变成水流)的指标。

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