Jabrane Oussama, Azzab Driss El, Martínez-Pagán Pedro, Martínez-Segura Marcos A, Mahjoub Himi, Charroud Mohammed
Sidi Mohamed Ben Abdellah University, Faculty of Science and Technology, SIGER Laboratory, Fez, BP2202, Morocco.
Department of Mining and Civil Engineering, Universidad Politecnica de Cartagena, Paseo Alfonso XIII, 52, 30203, Cartagena, Spain.
Data Brief. 2022 Nov 20;46:108763. doi: 10.1016/j.dib.2022.108763. eCollection 2023 Feb.
The electrical resistivity tomography (ERT) technique was conducted for the geophysical survey of a landslide on the southern slope of Jbel Tghat, north of the city of Fez, Morocco. Nine electrical resistivity tomography profiles were implemented to: (a) characterize the geometry of the dipping zone; (b) characterize their internal structures; and (c) highlight the faulting zone between the marly deposits and the conglomerate formation. The measured data sets were processed using EarthImager™ 2D (Advanced Geosciences, Inc), and BERT (Boundless Electrical Resistivity Tomography) software packages that offer a simple workflow from data import to inversion and visualization, while offering full control over inversion parameters. Moreover, BERT software is a Python-based open-source inversion software package. Both ERT processing software allows obtaining 2D subsurface electrical models associated with the distribution of the subsurface apparent electrical resistivity property, in Ohm.m units. Those 2D subsurface electrical models are retrieved using the same inversion parameters to determine the distribution of geoelectric layers and their defining parameters (e.g., electrical resistivity, thickness, and depth), giving access to certain characteristics exclusive to one of the two processing techniques, comparing the inversion findings to better understand the process's limits, as well as evaluating the capabilities of the two inversion methods.
在摩洛哥非斯市以北的杰贝尔·塔哈特南坡的一处滑坡上,采用电阻层析成像(ERT)技术进行了地球物理勘查。实施了九条电阻层析成像剖面,目的是:(a)描述倾斜带的几何形状;(b)描述其内部结构;(c)突出泥灰质沉积物与砾岩地层之间的断裂带。测量数据集使用EarthImager™ 2D(Advanced Geosciences, Inc)和BERT(无限电阻层析成像)软件包进行处理,这两个软件包提供了从数据导入到反演和可视化的简单工作流程,同时可对反演参数进行全面控制。此外,BERT软件是一个基于Python的开源反演软件包。两种ERT处理软件都能获得与地下视电阻率特性分布相关的二维地下电模型,单位为欧姆·米。使用相同的反演参数获取这些二维地下电模型,以确定地电层的分布及其定义参数(如电阻率、厚度和深度),从而了解两种处理技术中某一种所独有的某些特征,比较反演结果以更好地理解该过程的局限性,以及评估两种反演方法的能力。