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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Using highly accurate land gravity and 3D geologic modeling to discriminate potential geothermal areas: Application to the Upper Rhine Graben, France
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Using highly accurate land gravity and 3D geologic modeling to discriminate potential geothermal areas: Application to the Upper Rhine Graben, France

机译:使用高度准确的土地重力和3D地质建模来区分潜在地热区域:在法国上部莱茵河上莱茵河

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摘要

New land gravity data results acquired in northern Alsace were presented. Compared to the available old Bouguer anomaly, we recovered an accurate Bouguer anomaly field showing data uncertainties < 65 mu gal. A qualitative data analysis using pseudo-tomographies reveals several negative anomalies suggesting a decrease of the bulk density at the depth of geothermal interest. We have performed a quantitative study on the basis of the existing 3D geologic model derived from a reinterpretation of the vintage seismics. The theoretical gravity response indicates a great mismatch with the observed Bouguer anomaly. The stripping approach was applied, and the stripped Bouguer anomaly indicates that the density values of the Jurassic, but especially for the Triassic, the Buntsandstein, and the upper part of the basement, were overestimated even using the density values measured in the deep geothermal borehole. This suggests that the borehole density values do not reflect the density variations occurring at larger scale. To reduce the Bouguer anomaly during stripping, a negative density contrast should be affected to the Buntsandstein layer overlaying the basement, suggesting that the part located between the Buntsandstein and the upper part of the basement presents a low-density value compared to the reference density, which is not necessarily expected and is not observed in the densities measured in the borehole. Interestingly, a correlation is found between the gravity analyses and the thermal gradient boreholes in the northern part of the study area. For two boreholes, the gravity interpretation suggests a huge density decrease in the Buntsandstein, which may arise from a combination of high-density fracturing and the important quantity of geothermal fluid significantly affecting the bulk density. Analysis of the thermal borehole data suggests that these two boreholes indicate higher geothermal potential compared with the other boreholes.
机译:提出了在北阿拉斯州获得的新土地重力数据结果。与可用的旧Bouguer异常相比,我们恢复了一个准确的Bouguer异常字段,显示数据不确定性<65 mu gal。使用伪断层扫描的定性数据分析显示出几种负异常,表明地热兴趣的深度堆积密度降低。我们根据现有的3D地质模型进行了定量研究,从而源自复古地震的重新诠释。理论重力响应表明与观察到的Bouguer异常存在巨大不匹配。施加剥离方法,剥离的Bouguer异常表明侏罗纪的密度值,但特别是对于三叠系,Buntsandstein和地下部的上部,即使使用在深层地热钻孔中测量的密度值也会大得多估计。这表明钻孔密度值不反映以较大规模发生的密度变异。为了减少剥离期间的Bouguer异常,负面密度对比应受到覆盖地下室的Buntsandstein层的影响,表明位于Buntsandstein的部分和基底的上部与参考密度相比具有低密度值,在钻孔中测量的密度中,不一定期望并且未观察到。有趣的是,在研究区域的北部的重力分析和热梯度钻孔之间发现了相关性。对于两个钻孔,重力解释表明Buntsandstein的巨大密度降低,这可能从高密度压裂和显着影响堆积密度的重要地热流体的组合产生。热钻孔数据的分析表明,与其他钻孔相比,这两个钻孔表示更高的地热势。

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