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Use of Airborne TEM, Ground RMT and Borehole Data to Answer Hydrogeological Questions. A Case Study in Gotland, Sweden

机译:使用机载TEM,地面RMT和钻孔数据来回答水文地质问题。瑞典哥特兰案例研究

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Airborne Time Domain Electromagnetic (ATEM) measurements are conducted over four areas in the Island of Gotland in Sweden to identify and study underground water resources such as paleo-valleys and fracture zones in bedrock. Inversion of ATEM data contains new information about potential underground reservoirs. ATEM models are compared with more detailed ground RMT models and borehole data. The RMT and ATEM resistivity models demonstrate a considerable correlation in resolving layered models with lateral and vertical variations that reflect changes in geology and physical properties such as porosity and salinity. Borehole data collected close to the RMT profiles were used to calibrate the models against geology. The formation resistivity from borehole measurements was used as link between the borehole measurements and modeled ATEM and RMT data. Interpretation of ATEM models in areas 1 to 3 shows that towards the southeast the resistive limestone becomes thicker. Low resistivity zones, probably due to fractures within the limestone, are identified and can be counted as new potential underground water resources. Using a 40 m threshold, the saltwater surface found to be deeper towards the east in areas 1 to 3 and shallower in area 4.
机译:空中时域电磁(ATEM)测量是在瑞典哥特兰岛的四个区域进行的,以识别和研究基岩中古谷和骨折区域等地下水资源。 ATEM数据的反转包含有关潜在地下水库的新信息。与更详细的地面RMT模型和钻孔数据进行比较。 RMT和ATEM电阻率模型在解决分层模型中,在具有反映地质和物理性质的变化(如孔隙度和盐度)的变化的横向和垂直变化中的相当大的相关性。靠近RMT配置文件收集的钻孔数据用于校准针对地质的模型。钻孔测量的形成电阻率被用作钻孔测量和模拟ATEM和RMT数据之间的联系。 1至3区域的ATEM模型的解释表明,朝向东南部电阻石灰岩变厚。低电阻区,可能是由于石灰石内的裂缝,可以识别为新的潜在地下水资源。使用40米的阈值,发现咸水表面在1至3个区域朝向东部深入,面积4较浅。

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