3D modeling of the stratigraphic and structural architecture of the Crotone basin (southern Italy) using machine learning with python

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Title: 3D modeling of the stratigraphic and structural architecture of the Crotone basin (southern Italy) using machine learning with python
Authors: Falsetta, Ettore | Bullejos, Manuel | Critelli, Salvatore | Martín-Martín, Manuel
Research Group/s: Evolución Geodinámica de la Cordillera Bética Oriental y de la Plataforma Marina de Alicante
Center, Department or Service: Universidad de Alicante. Departamento de Ciencias de la Tierra y del Medio Ambiente
Keywords: Python libraries | KNN algorithm | 3D stratigraphic and structural architecture | Crotone basin | S Italy
Issue Date: 27-Mar-2024
Publisher: Elsevier
Citation: Marine and Petroleum Geology. 2024, 164: 106825. https://doi.org/10.1016/j.marpetgeo.2024.106825
Abstract: The 3D modeling and representation of geological data have experienced significant growth within last years, due to the use of new technologies derived from advancements in land representation methods. These technologies enable interactive, intuitive and clear geological visualizations. This paper shows how, by using the open-source Python software (operable with a simple internet browser) for machine learning (linear and KNN interpolations), together with Geographic Information Systems (GIS), it is possible to achieve interactive 3D visualizations of geological features in sedimentary basins. This study is performed in the onshore-offshore Crotone area (southern Italy) where a large amount of stratigraphic datasets are available from core perforation and seismic profiles due to the presence of a natural gas extraction field. Thanks to a database of 63 drilling lithologies and 43 check point obtained from the 9 interpreted seismic sections, records several 3D HTML models were constructed defining three stratigraphic units (Pre-Messinian, Messinian, and Post-Messinian). An overlap of the Post-Messinian top surface and an erosional truncation of the Messinian top surface toward the N were observed, together with a rising of the Pre-Messinian top surface in the northwestern area. This stratigraphic architecture may indicate a differential subsidence and/or uplifting due to syn-sedimentary fault kinematics in the whole studied area. The 3D models with the stratigraphic unit boundary surfaces obtained with KNN interpolation (the surfaces appear with stepped and abrupt edges) allowed the interpretation in terms of structural architecture and syn-sedimentary fault kinematics. Three main sets of faults were deduced: N–S set; NNW-SSE set, and ENE-WSW set. A minorly represented E-W set was added to the main sets. These faults generated a horsts-grabens structure, and in many cases a determinate set of faults generate a progressive lowering or rising of some areas with an “en echelon” arrangement. According to previous work, these deduced sets of faults (most of them are strike-slip faults) have a good agreement with the general structural architecture and defined faults in the area.
Sponsor: Financial support for this research derived from ENI-UNICAL funds (Definizione modello geologico e dei fenomeni geodinamici del Bacino Crotonese; Resp. S. Critelli). E. Falsetta was supported by The PhD Course in “Science and Engineering of Environment, Building and Energy” at the University of Calabria and by the PON React-EU “Ricerca e Innovazione” 2014–2020 funds (CUP: H29J21010090006). Research Project PID2020-114381GB-I00 to M. Martín-Martín, M. Bullejos and S. Critelli, Spanish Ministry of Education and Science; Research Groups and Projects of the Generalitat Valenciana, Alicante University (CTMA-IGA) are also acknowledged.
URI: http://hdl.handle.net/10045/141878
ISSN: 0264-8172 (Print) | 1873-4073 (Online)
DOI: 10.1016/j.marpetgeo.2024.106825
Language: eng
Type: info:eu-repo/semantics/article
Rights: © 2024 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
Peer Review: si
Publisher version: https://doi.org/10.1016/j.marpetgeo.2024.106825
Appears in Collections:INV - GEODIN - Artículos de Revistas

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