HTEM data improve 3D modelling of aquifers in Paris Basin, France

G. Martelet, P. Reninger, J. Perrin, B. Tourlière
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Abstract

In Paris Basin, we evaluate how HTEM data complement the usual borehole, geological and deep seismic data used for modelling aquifer geometries. With these traditional data, depths between ca. 50 to 300m are often relatively ill-constrained, as most boreholes lie within the first tens of meters of the underground and petroleum seismic is blind shallower than ca. 300m. We have fully reprocessed and re-inverted 540km of flight lines of a SkyTEM survey of 2009, acquired on a 40x12km zone with 400m line spacing. The resistivity model is first "calibrated" with respect to ca. 50 boreholes available on the study area. Overall, the correlation between EM resistivity models and the hydrogeological horizons clearly shows that the geological units in which the aquifers are developed almost systematically correspond to relative increase of resistivity, whatever the "background" resistivity environment and the lithology of the aquifer. In 3D Geomodeller software, this allows interpreting 11 aquifer/aquitar layers along the flight lines and then jointly interpolating them in 3D along with the borehole data. The resulting model displays 3D aquifer geometries consistent with the SIGES "reference" regional hydrogeological model and improves it in between the boreholes and on the 50-300m depth range.
HTEM数据改进了法国巴黎盆地含水层的三维建模
在巴黎盆地,我们评估了HTEM数据如何补充通常用于模拟含水层几何形状的钻孔、地质和深层地震数据。使用这些传统数据,大约50到300米之间的深度通常是相对不受约束的,因为大多数钻孔位于地下的头几十米内,石油地震的深度小于300米。我们对2009年SkyTEM测量的540公里飞行线进行了完全的再处理和重新反演,这些飞行线是在40 × 12公里的区域内获得的,线间距为400米。电阻率模型首先根据研究区内约50个钻孔进行“校准”。总的来说,电磁电阻率模型与水文地质层之间的相关性清楚地表明,无论“背景”电阻率环境和含水层岩性如何,含水层发育的地质单元几乎系统地对应于电阻率的相对增加。在3D Geomodeller软件中,这可以解释沿飞行线的11个含水层/含水层,然后将它们与井眼数据一起进行3D插值。所得模型显示的三维含水层几何形状与SIGES“参考”区域水文地质模型一致,并在井眼之间和50-300m深度范围内进行了改进。
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