Geophysical simulation of landslide model based on electrical resistivity and refraction seismic tomography through unstructured meshing

Publish Year: 1403
نوع سند: مقاله ژورنالی
زبان: English
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JR_IJMGE-58-3_004

تاریخ نمایه سازی: 14 مهر 1403

Abstract:

Mass movements of land, such as landslides, pose significant threats to human safety and infrastructure. This study focuses on advancing the understanding of landslide dynamics through the application of geophysical surveys, specifically Electrical Resistivity Tomography (ERT) and Seismic Refraction Tomography (SRT). Unstructured meshing, as a pivotal technique in geophysics simulation studies, provides flexibility in discretizing complex geological structures. This method allows for refined mesh elements where needed, optimizing computational resources. In the field of geophysics, unstructured meshing is particularly advantageous for accurately representing subsurface heterogeneities. This study employs pyGIMLi, a Geophysical Inversion and Modeling Python library. This Python programming library, though devoid of a GUI, offers a comprehensive suite of tools for geophysical data analysis and inversion. This library incorporates unstructured meshing capabilities. This feature enhances the accuracy of simulations, enabling researchers to model intricate geological formations with more precision. Using this library empowers users to seamlessly generate, manipulate, and analyze unstructured meshes, facilitating robust simulations and detailed investigations of subsurface properties in geophysics. In this study, we present a novel approach to simulate a ۳-layered landslide using ERT and SRT, coupled with inverse modeling through utilizing the unstructured meshing of the inversion area. The synthetic model produced has a depth of study extending to ۶۵ meters. The SRT model reveals a dense coverage in layer ۲, providing crucial information about the subsurface characteristics. The utilization of ERT and SRT in tandem allows for a comprehensive understanding of the landslide structure, offering insights into detecting the slip surface of the landslide. The study's innovative methodology provides a robust framework for the analysis of complex geological scenarios. The results obtained from this simulation contribute to the broader knowledge of landslide dynamics and offer a valuable tool for assessing and mitigating landslide risks in similar geological settings.

Authors

Amir Yazdanpanah

School of Mining Engineering, College of Engineering, University of Tehran, Tehran, Iran.

Maysam Abedi

School of Mining Engineering, College of Engineering, University of Tehran, Tehran, Iran.

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  • S. Morelli, S. Utili, V. Pazzi, R. Castellanza, and X. ...
  • D. Jongmans and S. Garambois, ‘Geophysical investigation of landslides : a ...
  • J. S. Whiteley et al., ‘Landslide monitoring using seismic refraction ...
  • S. Carpentier, M. Konz, R. Fischer, G. Anagnostopoulos, K. Meusburger, ...
  • P. Imani, A. Abd El-Raouf, and G. Tian, ‘Landslide investigation ...
  • G. Pappalardo, S. Imposa, M. S. Barbano, S. Grassi, and ...
  • J. S. Whiteley et al., ‘Rapid characterisation of landslide heterogeneity ...
  • S. Rezaei, I. Shooshpasha, and H. Rezaei, ‘Reconstruction of landslide ...
  • M. Zainal, B. Munir, M. Yanis, and A. Muhni, ‘Characterization ...
  • Q. U. Rehman, W. Ahmed, M. Waseem, S. Khan, A. ...
  • J. Yang et al., ‘Seismic Characterization of a Landslide Complex: ...
  • K. Damavandi, M. Abedi, G. H. Norouzi, and M. Mojarab, ...
  • Q. Chen, S. Zhang, S. Chang, B. Liu, J. Liu, ...
  • B. Pasierb, M. Grodecki, and R. Gwóźdź, ‘Geophysical and geotechnical ...
  • M. Himi et al., ‘Application of Resistivity and Seismic Refraction ...
  • D. Huntley, P. Bobrowsky, M. Hendry, R. Macciotta, and M. ...
  • M. Wróbel et al., ‘Integrated Geophysical Imaging and Remote Sensing ...
  • V. Pupatenko, Y. Sukhobok, G. Stoyanovich, A. Stetsyuk, and L. ...
  • G. Zhang, F. Tu, Y. Tang, X. Chen, K. Xie, ...
  • A. Hojat et al., ‘Geoelectrical characterization and monitoring of slopes ...
  • Y. Hussain et al., ‘Review on the Geophysical and UAV-Based ...
  • Adella Syavira, Y Yatini, and Wrego Seno Giamboro, ‘Identification of ...
  • G. Blanchy, S. Saneiyan, J. Boyd, P. McLachlan, and A. ...
  • C. Rücker, T. Günther, and F. M. Wagner, ‘pyGIMLi: An ...
  • R. Rochlitz, M. Becken, and T. Günther, ‘Three-dimensional inversion of ...
  • M. Steiner and A. Flores Orozco, ‘formikoj: A flexible library ...
  • R. Cockett, S. Kang, L. J. Heagy, A. Pidlisecky, and ...
  • V. J. C. B. Guedes, S. T. R. Maciel, and ...
  • Douglas W. Oldenburg and Yaoguo Li, ‘Fundamentals of Inversion Near-Surface ...
  • T. Chen and G. Zhang, ‘Forward modeling of gravity anomalies ...
  • T. M. Hansen, K. S. Cordua, B. H. Jacobsen, and ...
  • S. L. Butler and G. Sinha, ‘Forward modeling of applied ...
  • V. Pereyra, H. B. Keller, and W. H. K. Lee, ...
  • O. Portniaguine and M. S. Zhdanov, ‘Focusing geophysical inversion images’, ...
  • M. Giudici et al., ‘A conceptual framework for discrete inverse ...
  • Mitsuhiro MATSU’URA, ‘Development of Inversion Theory in Geophysics’, ۱۹۹۱ ...
  • A. Tamburrino and G. Rubinacci, ‘A new non-iterative inversion method ...
  • DC Electrical Resistance Tomography Inversion [مقاله ژورنالی]
  • M. Cozzolino, P. Mauriello, and D. Patella, ‘The Extended Data-Adaptive ...
  • D. J. LaBrecque and D. Casale, ‘Experience With Anisotropic Inversion ...
  • R. Poormirzaee, R. H. Moghadam, and A. Zarean, ‘Inversion seismic ...
  • D. Mooney and W. M. Kohler, ‘Inversion of seismic refraction ...
  • D. J. White, ‘Two‐Dimensional Seismic Refraction Tomography’, Geophys J Int, ...
  • P. Mora, ‘Inversion-migration-t-tomography’, ۱۹۸۸ ...
  • J. W. D. Hobro, S. C. Singh, and T. A. ...
  • A. Alimoradi and A. Moradzadeh, ‘Reservoir Porosity Determination from ۳D ...
  • A. Alimoradi, A. Moradzadeh, and M. R. Bakhtiari, ‘Application of ...
  • M. S. Jeshvaghani and M. Darijani, ‘Two-dimensional geomagnetic forward modeling ...
  • A. Binley, ‘Tools and Techniques: Electrical Methods’, Treatise on Geophysics: ...
  • K. Damavandi, M. Abedi, G. H. Norouzi, and M. Mojarab, ...
  • J. Milsom and A. Eriksen, ‘Field Geophysics, Fourth Edition’, Environmental ...
  • T. Günther, C. Rücker, and K. Spitzer, ‘Three-dimensional modelling and ...
  • V. der, G. Klaus Spitzer, B. Freiberg aD Peter Weidelt, ...
  • نمایش کامل مراجع