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Aquifer characterisation using Surface NMR jointly with other geophysical techniques at the Nauen/Berlin test site

机译:在Nauen / Berlin试验场使用Surface NMR和其他地球物理技术对含水层进行表征

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The quite new technique of Surface Nuclear Magnetic Resonance (SNMR) has been extensively tested on the test site Nauen near Berlin to yield the geometry, water content and hydraulic conductivity of the aquifer. The test site is composed of an unconfined aquifer consisting of Quaternary sands with glacial till beneath. It is a very favourable site for assessing the suitability and performance of joint geophysical methods for groundwater exploration. Complementary measurements to SNMR were conducted with Ground Penetrating Radar (GPR), ID-complex resistivity soundings, i.e. Spectral Induced Polarisation (SIP), 2D-geoelectrics and refraction seismics. Laboratory measurements of porosities, grain size distributions and Nuclear Magnetic Resonance (NMR) decay times were carried out on core samples, and hydraulic conductivities were also derived in order to control and interpret the results of field measurements. The SNMR method allowed the detection of the aquifer beyond any doubt and the determination of the approximate aquifer geometry. The aquifer water content found by SNMR fits very well with the independent measurements on core samples. Hydraulic conductivities derived from decay times are well in range with those from laboratory measurements. GPR allowed a very reliable determination of the aquifer geometry. This information, incorporated into inversion of geoelectric data, led to an improved determination of aquifer electrical resistivity. The estimation of water content by GPR and geoelectrics, even under the favourable conditions in Nauen, is by far not as reliable as that by SNMR. Obtaining information about hydraulic conductivity is possible only with SNMR. Thus, in combination with other geophysical methods, SNMR allows a much more detailed and reliable assessment of aquifers than what was possible with other surface geophysical methods before. In fact, it is, by far, the only method that allows direct detection of water and reliable estimations about water content. It is expected that SNMR will turn out to be a valuable and powerful tool in applied geophysics for groundwater exploration. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 41]
机译:相当新的表面核磁共振技术(SNMR)已在柏林附近的Nauen试验场进行了广泛测试,以得出含水层的几何形状,含水量和水力传导率。测试地点由无限制的含水层组成,该含水层由第四纪的沙子和下面的冰川构成。这是评估联合地球物理方法在地下水勘探中的适用性和性能的一个非常有利的场所。 SNMR的补充测量是使用探地雷达(GPR),ID复数电阻率测深(即光谱感应极化(SIP),2D地电和折射地震)进行的。对岩心样品进行了孔隙度,粒度分布和核磁共振(NMR)衰减时间的实验室测量,还导出了水电导率以控制和解释现场测量的结果。 SNMR方法可以毫无疑问地检测含水层,并确定近似的含水层几何形状。通过SNMR发现的含水层水含量非常适合岩心样品的独立测量。从衰减时间得出的水力传导率与实验室测量值的范围相差无几。 GPR可以非常可靠地确定含水层的几何形状。将该信息纳入地电数据反演后,可以改善对含水层电阻率的确定。即使在Nauen的有利条件下,通过GPR和地电进行的水含量估算也远不如SNMR可靠。只有使用SNMR才能获得有关水力传导率的信息。因此,与以前的其他地面地球物理方法相比,与其他地球物理方法相结合,SNMR可以对含水层进行更加详细和可靠的评估。实际上,到目前为止,这是唯一一种可以直接检测水和可靠地估计水含量的方法。预计SNMR将成为用于地下水勘探的应用地球物理学中的一种有价值且强大的工具。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:41]

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