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3D geological modelling at urban scale and mapping of ground movement susceptibility from gypsum dissolution: The Paris example (France)

机译:城市规模的3D地质建模和石膏溶解引起的地面运动敏感性图:巴黎的例子(法国)

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摘要

Gypsum dissolution can be the cause of damage associated with subsidence and collapse. In Paris, the authorities want to refine the current maps of the areas likely to be affected by ground movement due to gypsum dissolution in the Bartonian Saint Ouen Limestone and Beauchamp Sands, and in the Lutetian marl and limestone formation. The proposed method involves assessing separately the probabilities relative to factors that control the ground subsidence, i.e.: thickness of gypsum strata, sulphate-unsaturated water flows, groundwater level, thickness and nature of the overburden. The total susceptibility is represented in a map form by the product of these three values plotted on a grid map with a pixel size of 20 m. For this, we developed a multi-layer3D geological model using the same 20 m mesh grid, integrating 21 lithostratigraphic units. The hazard prone areas were calculated by geostatistical methods from the archived descriptions of more than 3900 boreholes and from existing geological maps. At the same time, the analysis of some 300 piezometers made it possible to construct the High Water (HW) and Low Water (LW) levels of the groundwater likely to have an impact on the dissolution of the gypsum. The obtained results correlate satisfactorily with the Parisian authorities' field knowledge and to the location of the known events. The mapping also revealed some sensitive areas that had not been previously identified; these will be checked by drilling. The constructed geological model and the hydrogeological analysis have already been used for studying other phenomena (e.g. sand flow and clay creep).
机译:石膏溶解可能是与塌陷和塌陷有关的破坏原因。在巴黎,当局希望完善当前的地图,这些地图可能受Bartonian Saint Ouen石灰石和Beauchamp Sands中的石膏溶解以及Lutetian泥灰岩和石灰石地层中的石膏溶解影响。拟议的方法涉及分别评估与控制地面沉降的因素有关的概率,即:石膏地层的厚度,硫酸盐不饱和水流量,地下水位,覆盖层的厚度和性质。总磁化率以图形式表示,是在像素大小为20 m的网格图上绘制的这三个值的乘积。为此,我们使用相同的20 m网格构建了一个多层3D地质模型,其中集成了21个岩石地层单元。易发危险区域是通过地统计学方法从3900多个钻孔的存档描述和现有地质图计算得出的。同时,对约300个压强计的分析使构建地下水的高水(HW)和低水(LW)水平成为可能,这可能会对石膏的溶解产生影响。获得的结果与巴黎当局的现场知识以及已知事件的位置令人满意地相关。该映射还揭示了一些以前未发现的敏感区域。这些将通过钻孔检查。构造的地质模型和水文地质分析已被用于研究其他现象(例如沙流和黏土蠕变)。

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