首页> 外文会议>Symposium on the Application Of Geophysics To Engineering And Environmental Problems >AIRBORNE TIME-DOMAIN ELECTROMAGNETICS FOR THREE-DIMENSIONAL MAPPING AND CHARACTERIZATION OF THE SPIRITWOOD VALLEY AQUIFER
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AIRBORNE TIME-DOMAIN ELECTROMAGNETICS FOR THREE-DIMENSIONAL MAPPING AND CHARACTERIZATION OF THE SPIRITWOOD VALLEY AQUIFER

机译:用于三维测绘的机载时域电磁和Spiritwood山谷含水层的表征

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The Geological Survey of Canada commissioned a helicopter-borne time-domain electromagnetic (HTEM) survey over a 1062 km~2 area of the Spiritwood Valley in southern Manitoba to test the effectiveness of airborne time-domain electromagnetics for mapping and characterizing buried valley aquifers in the Canadian Prairies. The HTEM data exhibit rich information content; apparent conductivity maps clearly image the Spiritwood Valley in addition to a continuous incised valley along the broader valley bottom. We detect complex valley morphology with nested scales of valleys including at least three distinct valley features and multiple possible tributaries. Conductivity-depth images (CDI) derived from the TEM decays indicate that the fill materials within the incised valleys are more resistive than the broader valley fill, consistent with an interpretation of sand and gravel. Comparison of ground-based electrical resistivity and seismic reflection data allow for calibration of CDI models. Lateral spatial information is in excellent agreement between data sets. The seismic data reveal the presence of additional valley features that are not imaged by the HTEM data as having a distinct electrical signature, possibly due to diamicton fill. The CDI model underestimates the dynamic range of electrical conductivity while overestimating depths to valley bottoms; these issues may be associated with system limitations, system bandwidth, algorithm limitations and penetration depth. The integrated data sets illustrate that HTEM surveys have the potential to map complicated buried valley aquifers at a level of detail required for groundwater prospecting and management.
机译:加拿大的地质调查委托一架直升机的时域电磁(HTEM)调查,在南部南部南部的Spiritwood山谷2面积超过1062 km〜2区,以测试空气传播时域电磁学的效果,用于绘制和表征埋地含水层加拿大大草原。 HTEM数据表现出丰富的信息内容;表观电导率地图清楚地描绘了Spiritwood山谷,除了沿着更广泛的山谷底部的连续切割谷。我们检测复杂的谷形态与嵌套鳞片的山谷,包括至少三个不同的谷谷特征和多种可能的支流。从TEM衰变的导电性深度图像(CDI)表明切口谷内的填充材料比更广泛的谷填充更电阻,与砂和砾石的解释一致。地基电阻率和地震反射数据的比较允许CDI模型的校准。横向空间信息在数据集之间非常一致。地震数据显示出额外的谷特征的存在,其未被HTEM数据成像,这是具有不同电力签名的,可能是由于Diamicton填充物。 CDI模型低估导电性的动态范围,同时高估到谷底部的深度;这些问题可能与系统限制,系统带宽,算法限制和穿透深度相关联。集成数据集说明了HTEM调查有可能在地下水勘探和管理所需的细节水平上映射复杂的埋地含水层。

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