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Improved hydrogeophysical characterization using joint inversion of cross-hole electrical resistance and ground-penetrating radar traveltime data.

机译:利用跨孔电阻和地面穿透雷达行进时间数据的联合反演改进了水文地球物理特征。

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摘要

Appropriate regularizations of geophysical inverse problems and joint inversion of different data types improve geophysical models and increase their usefulness in hydrogeological studies. We have developed an efficient method to calculate stochastic regularization operators for given geostatistical models. The method, which combines circulant embedding and the diagonalization theorem of circulant matrices, is applicable for stationary geostatistical models when the grid discretization, in each spatial direction, is uniform in the volume of interest. We also used a structural approach to jointly invert cross-hole electrical resistance and ground-penetrating radar traveltime data in three dimensions. The two models are coupled by assuming, at all points, that the cross product of the gradients of the two models is zero. No petrophysical relationship between electrical conductivity and relative permittivity is assumed but is instead obtained as a by-product of the inversion. The approach has been applied to data collected in a U.K. sandstone aquifer in order to improve characterization of the vadose zone hydrostratigraphy. By analyzing scatterplots of electrical conductivity versus relative permittivity together with petrophysical models a zonation could be obtained with corresponding estimates of the electrical formation factor, the water content, and the effective grain radius of the sediments. The approach provides greater insight into the hydrogeological characteristics of the subsurface than by using conventional geophysical inversion methods.
机译:对地球物理反问题进行适当的正则化以及不同数据类型的联合反演可以改善地球物理模型并增加其在水文地质研究中的实用性。对于给定的地统计模型,我们已经开发出一种有效的方法来计算随机正则化算子。该方法结合了循环嵌入和循环矩阵的对角线定理,适用于在各个空间方向上网格离散在目标体积上均匀的静态地统计学模型。我们还使用了一种结构化方法来在三个维度上共同反转过孔电阻和穿透地面的雷达旅行时间数据。通过在所有点上假设两个模型的梯度的叉积为零来耦合这两个模型。没有假定电导率和相对介电常数之间的岩石物理关系,而是作为反演的副产品获得的。该方法已应用于英国砂岩含水层中收集的数据,以改善渗流带水文地层学的特征。通过分析电导率与相对介电常数的散点图以及岩石物理模型,可以获得带电形成因子,水含量和沉积物有效晶粒半径的相应估计值的分区。与使用常规的地球物理反演方法相比,该方法可以更深入地了解地下的水文地质特征。

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