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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Joint inversion of seismic refraction and resistivity data using layered models - Applications to groundwater investigation
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Joint inversion of seismic refraction and resistivity data using layered models - Applications to groundwater investigation

机译:使用分层模型的地震折射和电阻率数据联合反演-在地下水调查中的应用

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摘要

We developed a method for joint inversion of seismic refraction and resistivity data, using sharp-boundary models with few layers (typically three). We demonstrated the usefulness of the approach via examples from near-surface case studies involving shallow groundwater exploration and geotechnical investigations, although it should also be applicable to other types of layered environments, e.g., sedimentary basins. In our model parameterization, the layer boundaries were common for the resistivity and velocity distributions. Within the layers, only lateral variations in the material parameters (resistivity and velocity) were allowed, and we assumed no correlation between these. The inversion was performed using a nonlinear least-squares algorithm, using lateral smoothing to the layer boundaries and to the materialparameters. Depending on the subsurface conditions, the smoothing can be applied either to the depth of the layer boundaries or to the layer thicknesses. The forward responses and Jacobian for refraction seismics were calculated through ray tracing. The resistivity computations were performed with finite differences and a cell-to-layer transform for the Frechet derivatives. Our method performed well in synthetic tests, and in the case studies, the layer boundaries were in good agreement with in situ tests and seismic reflection data, although minimum-structure inversion generally has a better data fit due to more freedom to introduce model heterogeneity. We further found that our joint inversion approach can provide more accurate thickness estimates for seismic hidden layers.
机译:我们开发了一种使用几层(通常为三层)的尖锐边界模型对地震折射和电阻率数据进行联合反演的方法。我们通过涉及浅层地下水勘探和岩土勘查的近地表案例研究证明了该方法的有效性,尽管它也应适用于其他类型的分层环境,例如沉积盆地。在我们的模型参数化中,层边界对于电阻率和速度分布是通用的。在这些层中,仅允许材料参数(电阻率和速度)的横向变化,并且我们假设这些参数之间没有相关性。使用非线性最小二乘算法对层边界和材料参数进行横向平滑,从而进行反演。取决于地下条件,可以对层边界的深度或对层厚度进行平滑处理。通过射线追踪计算了折射地震的前向响应和雅可比行列式。电阻率计算在有限差分下进行,并针对Frechet导数进行了单元到层的转换。我们的方法在综合测试中表现良好,在案例研究中,尽管最小结构反演由于引入模型异质性的更多自由度而通常具有更好的数据拟合性,但层边界与原位测试和地震反射数据非常吻合。我们进一步发现,我们的联合反演方法可以为地震隐伏层提供更准确的厚度估算。

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