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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Comparison of an optimized resistivity array with dipole-dipole soundings in karst terrain
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Comparison of an optimized resistivity array with dipole-dipole soundings in karst terrain

机译:喀斯特地形中具有偶极-偶极子测深的优化电阻率阵列的比较

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We report the results of a field comparison of 2D, resistivity data collected using both the traditional dipole-dipole array and a new computer-optimized array recently described in literature. The study was conducted at a karst site in eastern Pennsylvania. Computer simulations suggested that for a given line length, the optimal array and the dipole-dipole array would be equally effective at imaging shallow targets but the optimal array would provide better resolution at depth. Our field test results showed that the two arrays imaged karst bedrock topography equally well. When the full grid of 2D lines were combined and analyzed using 3D inversion, however, the optimal array was able to resolve a crosscutting bedrock fracture system that was not visible in the dipole-dipole data. The existence of the fracture system was confirmed by drilling. Because the optimal array requires roughly three times as many measurements per line, we conclude that the optimal array is preferable to traditional dipole-dipole soundings only when the slight improvement in resolution at depth is more important than rapid data collection.
机译:我们报告了使用传统偶极子-偶极子阵列和最近在文献中描述的新型计算机优化阵列收集的二维电阻率数据的现场比较结果。该研究是在宾夕法尼亚州东部的一个岩溶地区进行的。计算机仿真表明,对于给定的线长,最佳阵列和偶极-偶极阵列在成像浅层目标时将同样有效,但最佳阵列将在深度提供更好的分辨率。我们的现场测试结果表明,这两个阵列对岩溶基岩地形的成像效果均相同。但是,当合并2D线的完整网格并使用3D反演进行分析时,最佳阵列能够解决在偶极子-偶极子数据中不可见的横切基岩断裂系统。通过钻孔确认了裂缝系统的存在。由于最佳阵列每条线需要进行大约三倍的测量,因此我们得出结论,仅当深度分辨率的略微提高比快速数据收集更重要时,最佳阵列才比传统的偶极子-偶极子测深更好。

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