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Combined GPR and surface magnetic resonance investigation for aquifer characterisation

机译:结合GPR和表面磁共振研究来表征含水层

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Ground-penetrating radar (GPR) and magnetic resonance tomography (MRT) are used for aquifer architecture mapping and characterisation. We combine both techniques on a hydrogeophysical test site with glacigenic and periglacial deposits that show distinct lateral variability. A pseudo 3D GPR investigation provides the architecture on a large area and, e.g., the topography of a till layer, which acts as an aquitard. We use this structural information as constraint for the 2D MRT data inversion to overcome the limited spatial resolution of the method. Inversion results show that the imaging of water content and relaxation time, which is related to pore-size distribution, is improved using a mesh including the GPR reflections and by applying a sharp boundary constraint at the GPR reflectors. Some anomalies remain in the inverted relaxation times that are probably caused by 3D effects of the till topography as mapped by GPR.
机译:探地雷达(GPR)和磁共振断层扫描(MRT)用于含水层结构的制图和表征。我们将两种技术在水文地球物理测试现场与冰川成因和冰缘沉积相结合,显示出明显的横向变化。伪3D GPR研究提供了大面积的架构以及例如耕层的地形,该耕层充当了后遗症。我们使用这种结构信息作为2D MRT数据反演的约束条件,以克服该方法有限的空间分辨率。反演结果表明,使用包含GPR反射的网格并通过在GPR反射器上施加清晰的边界约束,可以改善与孔径分布有关的水含量和弛豫时间的成像。一些异常保留在反向松弛时间内,这可能是由GPR映射的地形地形的3D效应引起的。

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