Cargando…

Geobody estimation by Bhattacharyya method utilizing nonlinear inverse modeling of magnetic data in Baba-Ali iron deposit, NW Iran

One of the essential geophysical concerns is the estimation of the physical and geometrical parameters of the reserve (geobody), which is done by exploiting the nonlinear inverse modeling of magnetic data. The present study includes preparing and modeling magnetic data to suggest the Baba Ali Iron o...

Descripción completa

Detalles Bibliográficos
Autores principales: Kianoush, Pooria, Keshavarz Faraj Khah, Nasser, Hosseini, Seyed Aliakbar, Jamshidi, Emad, Afzal, Peyman, Ebrahimabadi, Arash
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10618795/
https://www.ncbi.nlm.nih.gov/pubmed/37920503
http://dx.doi.org/10.1016/j.heliyon.2023.e21115
_version_ 1785129854331518976
author Kianoush, Pooria
Keshavarz Faraj Khah, Nasser
Hosseini, Seyed Aliakbar
Jamshidi, Emad
Afzal, Peyman
Ebrahimabadi, Arash
author_facet Kianoush, Pooria
Keshavarz Faraj Khah, Nasser
Hosseini, Seyed Aliakbar
Jamshidi, Emad
Afzal, Peyman
Ebrahimabadi, Arash
author_sort Kianoush, Pooria
collection PubMed
description One of the essential geophysical concerns is the estimation of the physical and geometrical parameters of the reserve (geobody), which is done by exploiting the nonlinear inverse modeling of magnetic data. The present study includes preparing and modeling magnetic data to suggest the Baba Ali Iron ore deposit's drilling locations in NW Iran. The area is covered with 1000 points of geomagnetic reading with an almost 5 × 10 m(2) regularly spaces grid trending WE. The areal and depth extent of the iron ore geobody was unknown. The Bhattacharyya method by MATLAB software coding was employed to underestimate the misfit function and re-construct potential field data, providing the most suitable fitting with measured magnetic data. In this order, the residual calculated anomaly exhibited an excellent two-dimensional conformation with forward modeling. Furthermore, 3D modeling correctly reconstructs the anomalies' productive resources' properties. After preparing full magnetic maps, the magnetic lenses distinguished in four anomalies of surface depths, 20, 50, and deeper than 50 m for this zone. This magnetite lens for the first zone was estimated based on analytical signal filters applied on the entire magnetic map so that the lens's depth is trivial and almost zero. Due to specific gravity calculated as 4.77 t/m(3), initial storage capacity is suggested to be about 95,400 tons of magnetite, pyrite, and hematite minerals at most in an area about 6 Km(2). Finally, to complete the preliminary explorations of the specified area, exploratory drilling is suggested for three points by inverse modeling. Regarding this study as the first try in magnetic reconnaissance step of Iron mineral exploration in the study area, there is no geological constraints available based on drilling evidences. However, the model is well satisfies the surface anomalies considering residual magnetic property.
format Online
Article
Text
id pubmed-10618795
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-106187952023-11-02 Geobody estimation by Bhattacharyya method utilizing nonlinear inverse modeling of magnetic data in Baba-Ali iron deposit, NW Iran Kianoush, Pooria Keshavarz Faraj Khah, Nasser Hosseini, Seyed Aliakbar Jamshidi, Emad Afzal, Peyman Ebrahimabadi, Arash Heliyon Research Article One of the essential geophysical concerns is the estimation of the physical and geometrical parameters of the reserve (geobody), which is done by exploiting the nonlinear inverse modeling of magnetic data. The present study includes preparing and modeling magnetic data to suggest the Baba Ali Iron ore deposit's drilling locations in NW Iran. The area is covered with 1000 points of geomagnetic reading with an almost 5 × 10 m(2) regularly spaces grid trending WE. The areal and depth extent of the iron ore geobody was unknown. The Bhattacharyya method by MATLAB software coding was employed to underestimate the misfit function and re-construct potential field data, providing the most suitable fitting with measured magnetic data. In this order, the residual calculated anomaly exhibited an excellent two-dimensional conformation with forward modeling. Furthermore, 3D modeling correctly reconstructs the anomalies' productive resources' properties. After preparing full magnetic maps, the magnetic lenses distinguished in four anomalies of surface depths, 20, 50, and deeper than 50 m for this zone. This magnetite lens for the first zone was estimated based on analytical signal filters applied on the entire magnetic map so that the lens's depth is trivial and almost zero. Due to specific gravity calculated as 4.77 t/m(3), initial storage capacity is suggested to be about 95,400 tons of magnetite, pyrite, and hematite minerals at most in an area about 6 Km(2). Finally, to complete the preliminary explorations of the specified area, exploratory drilling is suggested for three points by inverse modeling. Regarding this study as the first try in magnetic reconnaissance step of Iron mineral exploration in the study area, there is no geological constraints available based on drilling evidences. However, the model is well satisfies the surface anomalies considering residual magnetic property. Elsevier 2023-10-21 /pmc/articles/PMC10618795/ /pubmed/37920503 http://dx.doi.org/10.1016/j.heliyon.2023.e21115 Text en © 2023 The Authors. Published by Elsevier Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Kianoush, Pooria
Keshavarz Faraj Khah, Nasser
Hosseini, Seyed Aliakbar
Jamshidi, Emad
Afzal, Peyman
Ebrahimabadi, Arash
Geobody estimation by Bhattacharyya method utilizing nonlinear inverse modeling of magnetic data in Baba-Ali iron deposit, NW Iran
title Geobody estimation by Bhattacharyya method utilizing nonlinear inverse modeling of magnetic data in Baba-Ali iron deposit, NW Iran
title_full Geobody estimation by Bhattacharyya method utilizing nonlinear inverse modeling of magnetic data in Baba-Ali iron deposit, NW Iran
title_fullStr Geobody estimation by Bhattacharyya method utilizing nonlinear inverse modeling of magnetic data in Baba-Ali iron deposit, NW Iran
title_full_unstemmed Geobody estimation by Bhattacharyya method utilizing nonlinear inverse modeling of magnetic data in Baba-Ali iron deposit, NW Iran
title_short Geobody estimation by Bhattacharyya method utilizing nonlinear inverse modeling of magnetic data in Baba-Ali iron deposit, NW Iran
title_sort geobody estimation by bhattacharyya method utilizing nonlinear inverse modeling of magnetic data in baba-ali iron deposit, nw iran
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10618795/
https://www.ncbi.nlm.nih.gov/pubmed/37920503
http://dx.doi.org/10.1016/j.heliyon.2023.e21115
work_keys_str_mv AT kianoushpooria geobodyestimationbybhattacharyyamethodutilizingnonlinearinversemodelingofmagneticdatainbabaaliirondepositnwiran
AT keshavarzfarajkhahnasser geobodyestimationbybhattacharyyamethodutilizingnonlinearinversemodelingofmagneticdatainbabaaliirondepositnwiran
AT hosseiniseyedaliakbar geobodyestimationbybhattacharyyamethodutilizingnonlinearinversemodelingofmagneticdatainbabaaliirondepositnwiran
AT jamshidiemad geobodyestimationbybhattacharyyamethodutilizingnonlinearinversemodelingofmagneticdatainbabaaliirondepositnwiran
AT afzalpeyman geobodyestimationbybhattacharyyamethodutilizingnonlinearinversemodelingofmagneticdatainbabaaliirondepositnwiran
AT ebrahimabadiarash geobodyestimationbybhattacharyyamethodutilizingnonlinearinversemodelingofmagneticdatainbabaaliirondepositnwiran