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Modelling the behaviour of a large landslide with respect to hydrogeological and geomechanical parameter heterogeneity

机译:相对于水文地质和岩土力学参数异质性对大型滑坡行为进行建模

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Thanks to a sophisticated transient hydrogeological modelling allowing the determination of the pore pressure fields in La Frasse landslide mass during a crisis, it has been possible to model the mechanical behaviour of the slide and obtain results that prove to be similar to the monitored data, in terms of peak velocity, distribution of velocity with time and space and total displacements. Such results are reached only when appropriate constitutive modelling laws are used, and when geotechnical tests supply all the required parameters. The main results concern the potential effect of a drainage system during a crisis, like the one experienced in 1994. It can include vertical boreholes equipped with pumps or drains drilled from a gallery. The draining system reduces horizontal displacements down to 5% of the values modelled during the crisis. This effect, which appears to extend over a large width, will be even more significant if the boreholes discharge the drained water into the gallery, due to its extension in the presently stabilised landslide mass below the active zone. The modelling tools developed for La Frasse landslide thus provide all the necessary information to optimise the drainage scheme.
机译:得益于复杂的瞬态水文地质建模,可以确定危机期间La Frasse滑坡体的孔隙压力场,因此可以对滑坡的力学行为进行建模,并获得与监测数据相似的结果。峰值速度,随时间和空间的速度分布以及总位移。仅当使用适当的本构模型定律并且岩土试验提供所有必需的参数时,才能获得此类结果。主要结果与危机期间的排水系统的潜在影响有关,例如1994年的那种情况。它可能包括垂直的井眼,该井眼配有从画廊钻出的泵或排水管。排水系统可将水平位移降低至危机期间建模值的5%。如果钻孔将排水排入通道,则该效果似乎会在较大的宽度上延伸,这将更为显着,这是由于其在活动区下方目前稳定的滑坡体中的扩展。因此,为La Frasse滑坡开发的建模工具可提供所有必要的信息,以优化排水方案。

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