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首页> 外文期刊>Journal of Applied Geophysics >Joint probabilistic inversion of DC resistivity and seismic refraction data applied to bedrock/regolith interface delineation
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Joint probabilistic inversion of DC resistivity and seismic refraction data applied to bedrock/regolith interface delineation

机译:直流电阻率的联合概率反转和应用于基岩/极升性接口描绘的地震折射数据

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摘要

The depth and geometry of the bedrock/regolith interface influence many near-surface processes. Geophysics offer means to image them non-invasively since they correspond to discontinuities in physical properties. For instance, refraction seismic applications can leverage the strong correlation between seismic velocity and porosity, while DC resistivity measurements with their sensitivity to electrical conductivity are indirectly sensitive to porosity and clay content. Combining these two data types is beneficial since their spatial resolution patterns and sensitivities to relevant target properties differ. Here, we propose a probabilistic joint inversion framework that uses DC resistivity and first-arrival seismic travel times to infer a common interface geometry separating two heterogeneous sub-domains. A synthetic test case demonstrates that the method is more accurate in sampling the target interface than inversion results obtained using single datasets. We then applied the joint inversion method to field data from the Calhoun Critical Zone Observatory in South Carolina, where it resolves apparent contradictions in the individual inversion results. It produces a bedrock topography that mirrors surface topography and offers clear indications of a more fractured bedrock below the surface topography lows. (C) 2019 Elsevier B.V. All rights reserved.
机译:基岩/极升性界面的深度和几何形状会影响许多近表面过程。地球物理提供意味着非侵入性地将它们图像图像,因为它们对应于物理性质中的不连续性。例如,折射地震应用可以利用地震速度和孔隙率之间的强相关性,而DC电阻率测量与其对电导率的敏感性对孔隙率和粘土含量间接敏感。组合这两个数据类型是有益的,因为它们对相关目标属性的空间分辨率模式和敏感性不同。在这里,我们提出了一种概率的联合反演框架,其使用直流电阻率和第一到来的地震行程时间来推断分离两个异质子域的公共界面几何形状。合成测试用例演示了该方法在采样比使用单个数据集获得的反演结果的对目标界面更准确。然后,我们将联合反演方法应用于南卡罗来纳州的Calhoun关键区域天文台的现场数据,在那里解决了个人反演结果中明显矛盾。它产生了一种基岩地形,镜面形貌镜像地形,并在表面形貌低于下方的更裂缝基岩的清晰指示。 (c)2019年Elsevier B.V.保留所有权利。

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