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Magnetic Resonance Sounding Applied to Aquifer Characterization

机译:磁共振测深在含水层表征中的应用

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Magnetic resonance sounding (MRS) is distinguished from other geophysical tools used for ground water investigation by the fact that it measures a magnetic resonance signal generated directly from subsurface water molecules. An alternating current pulse energizes a wire loop on the ground surface and the MRS signal is generated; subsurface water is indicated, with a high degree of reliability, by nonzero amplitude readings. Measurements with varied pulse magnitudes then reveal the depth and thickness of water saturated layers. The hydraulic conductivity of aquifers can also be estimated using boreholes for calibration. MRS can be used for both predicting the yield of water supply wells and for interpolation between boreholes, thereby reducing the number of holes required for hydrogeological modeling. An example of the practical application of MRS combined with two-dimensional electrical imaging, in the Ker-bernez and Kerien catchments area of France, demonstrates the efficiency of the technique.
机译:磁共振探测(MRS)与用于地下水研究的其他地球物理工具的区别在于,它可以测量直接从地下水分子产生的磁共振信号。交流脉冲激励地面上的电线回路,并产生MRS信号;非零振幅读数指示地下水具有高度的可靠性。然后,用变化的脉冲幅度进行测量即可揭示出水饱和层的深度和厚度。含水层的水力传导率也可以使用钻孔进行估算。 MRS可用于预测供水井的产量和钻孔之间的插值,从而减少水文地质建模所需的钻孔数量。在法国的克尔伯纳兹和科里恩集水区,结合了二维电子成像的MRS的实际应用实例证明了该技术的有效性。

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