Relation between time-domain chargability and spectral chargability in an IP survey conducted by an exploration company in the high sector Checa, Valley of Tambo Arequipa, 2015

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Geophysical studies oriented to characterization play a very important role in providing a better understanding of the internal structure of the earth and specifically of a new study area and consequently being able to map its properties, its characteristics and the effects generated by the processe...

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Detalles Bibliográficos
Autores: Peláez Mc Evoy, Ricardo Fabian, Torres Guerra, Jesús Alberto
Formato: artículo
Fecha de Publicación:2021
Institución:Universidad Nacional Mayor de San Marcos
Repositorio:Revistas - Universidad Nacional Mayor de San Marcos
Lenguaje:español
OAI Identifier:oai:revistasinvestigacion.unmsm.edu.pe:article/21785
Enlace del recurso:https://revistasinvestigacion.unmsm.edu.pe/index.php/iigeo/article/view/21785
Nivel de acceso:acceso abierto
Materia:Time domain chargability
spectral chargability
Fourier transform
Cargabilidad en el dominio del tiempo
cargabilidad espectral
transformada de Fourier
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dc.title.none.fl_str_mv Relation between time-domain chargability and spectral chargability in an IP survey conducted by an exploration company in the high sector Checa, Valley of Tambo Arequipa, 2015
Relación entre la cargabilidad en el dominio del tiempo y la cargabilidad espectral en un estudio de IP realizado por una empresa de exploración el sector de Checa Alta, Valle de Tambo Arequipa, 2015
title Relation between time-domain chargability and spectral chargability in an IP survey conducted by an exploration company in the high sector Checa, Valley of Tambo Arequipa, 2015
spellingShingle Relation between time-domain chargability and spectral chargability in an IP survey conducted by an exploration company in the high sector Checa, Valley of Tambo Arequipa, 2015
Peláez Mc Evoy, Ricardo Fabian
Time domain chargability
spectral chargability
Fourier transform
Cargabilidad en el dominio del tiempo
cargabilidad espectral
transformada de Fourier
title_short Relation between time-domain chargability and spectral chargability in an IP survey conducted by an exploration company in the high sector Checa, Valley of Tambo Arequipa, 2015
title_full Relation between time-domain chargability and spectral chargability in an IP survey conducted by an exploration company in the high sector Checa, Valley of Tambo Arequipa, 2015
title_fullStr Relation between time-domain chargability and spectral chargability in an IP survey conducted by an exploration company in the high sector Checa, Valley of Tambo Arequipa, 2015
title_full_unstemmed Relation between time-domain chargability and spectral chargability in an IP survey conducted by an exploration company in the high sector Checa, Valley of Tambo Arequipa, 2015
title_sort Relation between time-domain chargability and spectral chargability in an IP survey conducted by an exploration company in the high sector Checa, Valley of Tambo Arequipa, 2015
dc.creator.none.fl_str_mv Peláez Mc Evoy, Ricardo Fabian
Torres Guerra, Jesús Alberto
Peláez Mc Evoy, Ricardo Fabian
Torres Guerra, Jesús Alberto
author Peláez Mc Evoy, Ricardo Fabian
author_facet Peláez Mc Evoy, Ricardo Fabian
Torres Guerra, Jesús Alberto
author_role author
author2 Torres Guerra, Jesús Alberto
author2_role author
dc.subject.none.fl_str_mv Time domain chargability
spectral chargability
Fourier transform
Cargabilidad en el dominio del tiempo
cargabilidad espectral
transformada de Fourier
topic Time domain chargability
spectral chargability
Fourier transform
Cargabilidad en el dominio del tiempo
cargabilidad espectral
transformada de Fourier
description Geophysical studies oriented to characterization play a very important role in providing a better understanding of the internal structure of the earth and specifically of a new study area and consequently being able to map its properties, its characteristics and the effects generated by the processes of geological alteration. This will finally generate a better geological - geophysical interpretation in the new study zone. In this research work the chargeability data registered in the time domain is being used, firstly the values registered through the 20 windows sampled in time are used and this decay curve obtained is the one used to determine the function transfer that expresses the behavior of the subsoil when applying a current and observing its chargeability. This transfer function is then used, and the Fourier transform is applied to decompose this new signal into its spectral values. These spectral values extracted from the transfer function contain values of amplitude, phase, and angular frequency. With these new variables, 3 additional cubes have been generated and this has made it possible to have more elements and variables that help in a better characterization and interpretation of the study area. The important thing about this research work is the way in which the data recorded over time is used and through a Fourier transform it is changed to the spectral domain that have sensitive characteristics for each type of rock or soil. This has allowed us to understand how a medium behaves when an electric field is applied to it and through these results, we can give an added and additional value to the chargeability data recorded over time. Everything mentioned above has been achieved using a series of algorithms that have been developed in MATLAB to finally obtain the variables angular frequency, amplitude, and phase. Finally, these results are observed with better clarity with the variable amplitude where a differentiation can be observed between a type of massive rock, a fractured rock, alteration zones and zones of low compaction. Regarding the phase variable, a differentiation of blocks with a good alignment of the fault can be confirmed, confirming the bearing and azimuth of the fault.
publishDate 2021
dc.date.none.fl_str_mv 2021-12-23
dc.type.none.fl_str_mv info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion
format article
status_str publishedVersion
dc.identifier.none.fl_str_mv https://revistasinvestigacion.unmsm.edu.pe/index.php/iigeo/article/view/21785
10.15381/iigeo.v24i48.21785
url https://revistasinvestigacion.unmsm.edu.pe/index.php/iigeo/article/view/21785
identifier_str_mv 10.15381/iigeo.v24i48.21785
dc.language.none.fl_str_mv spa
language spa
dc.relation.none.fl_str_mv https://revistasinvestigacion.unmsm.edu.pe/index.php/iigeo/article/view/21785/17521
dc.rights.none.fl_str_mv Derechos de autor 2021 Ricardo Fabian Peláez Mc Evoy, Jesús Alberto Torres Guerra
http://creativecommons.org/licenses/by/4.0
info:eu-repo/semantics/openAccess
rights_invalid_str_mv Derechos de autor 2021 Ricardo Fabian Peláez Mc Evoy, Jesús Alberto Torres Guerra
http://creativecommons.org/licenses/by/4.0
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.publisher.none.fl_str_mv Universidad Nacional Mayor de San Marcos, Facultad de Ingeniería Geológica, Minera, Metalúrgica y Geográfica
publisher.none.fl_str_mv Universidad Nacional Mayor de San Marcos, Facultad de Ingeniería Geológica, Minera, Metalúrgica y Geográfica
dc.source.none.fl_str_mv Revista del Instituto de investigación de la Facultad de minas, metalurgia y ciencias geográficas; Vol. 24 No. 48 (2021); 329-339
Revista del Instituto de investigación de la Facultad de minas, metalurgia y ciencias geográficas; Vol. 24 Núm. 48 (2021); 329-339
1682-3087
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spelling Relation between time-domain chargability and spectral chargability in an IP survey conducted by an exploration company in the high sector Checa, Valley of Tambo Arequipa, 2015Relación entre la cargabilidad en el dominio del tiempo y la cargabilidad espectral en un estudio de IP realizado por una empresa de exploración el sector de Checa Alta, Valle de Tambo Arequipa, 2015Peláez Mc Evoy, Ricardo FabianTorres Guerra, Jesús AlbertoPeláez Mc Evoy, Ricardo FabianTorres Guerra, Jesús AlbertoTime domain chargabilityspectral chargabilityFourier transformCargabilidad en el dominio del tiempocargabilidad espectraltransformada de FourierGeophysical studies oriented to characterization play a very important role in providing a better understanding of the internal structure of the earth and specifically of a new study area and consequently being able to map its properties, its characteristics and the effects generated by the processes of geological alteration. This will finally generate a better geological - geophysical interpretation in the new study zone. In this research work the chargeability data registered in the time domain is being used, firstly the values registered through the 20 windows sampled in time are used and this decay curve obtained is the one used to determine the function transfer that expresses the behavior of the subsoil when applying a current and observing its chargeability. This transfer function is then used, and the Fourier transform is applied to decompose this new signal into its spectral values. These spectral values extracted from the transfer function contain values of amplitude, phase, and angular frequency. With these new variables, 3 additional cubes have been generated and this has made it possible to have more elements and variables that help in a better characterization and interpretation of the study area. The important thing about this research work is the way in which the data recorded over time is used and through a Fourier transform it is changed to the spectral domain that have sensitive characteristics for each type of rock or soil. This has allowed us to understand how a medium behaves when an electric field is applied to it and through these results, we can give an added and additional value to the chargeability data recorded over time. Everything mentioned above has been achieved using a series of algorithms that have been developed in MATLAB to finally obtain the variables angular frequency, amplitude, and phase. Finally, these results are observed with better clarity with the variable amplitude where a differentiation can be observed between a type of massive rock, a fractured rock, alteration zones and zones of low compaction. Regarding the phase variable, a differentiation of blocks with a good alignment of the fault can be confirmed, confirming the bearing and azimuth of the fault.Los estudios de geofísica orientados a la caracterización juegan un papel muy importante para proporcionar un mejor entendimiento de la estructura interna de la tierra y específicamente de una nueva zona de estudio y como consecuencia poder mapear sus propiedades, sus características y los efectos que generan los procesos de alteración geológica. Esto finalmente generará en una mejor interpretación geológica - geofísica en la zona nueva zona de estudio. En este trabajo de investigación se está utilizando los datos de cargabilidad registrados en el dominio del tiempo; primeramente, se utiliza los valores registrados a través de las 20 ventanas muestreadas en el tiempo y esta curva de decaimiento obtenida es la que se utiliza para determinar la función de transferencia que expresa el comportamiento del subsuelo al aplicar una corriente y observar su cargabilidad. Seguidamente se utiliza esta función de transferencia y se aplica la transformada de Fourier para descomponer esta nueva señal en sus valores espectrales. Estos valores espectrales extraídos de la función de transferencia contienen valores de amplitud, Fase y frecuencia angular. Con estas nuevas variables se ha generado 3 cubos adicionales y esto ha hecho posible tener más elementos y variables que ayuden en una mejor caracterización e interpretación de la zona de estudio. Lo importante de este trabajo de investigación es la forma como se utiliza los datos registrados en el tiempo y a través de una transformada de Fourier se cambia al dominio espectral que poseen características sensibles para cada tipo de roca o suelo. Esto ha permitido poder entender cómo se comporta un medio al aplicarle un campo eléctrico y mediante estos resultados podemos otorgarles un valor agregado y adicional a los datos de cargabilidad registrados en el tiempo. Todo lo señalado anteriormente se ha conseguido utilizando una serie de algoritmos que se han desarrollado en MATLAB para finalmente obtener las variables frecuencia angular, amplitud y fase. Finalmente, estos resultados se observan con mejor claridad con la variable amplitud donde se puede observar una diferenciación entre un tipo de roca masiva, una roca fracturada, zonas de alteración y zonas de baja compactación. Con respecto a la variable fase se puede confirmar una diferenciación de bloques con un buen alineamiento de la falla confirmando el rumbo y azimut de esta.Universidad Nacional Mayor de San Marcos, Facultad de Ingeniería Geológica, Minera, Metalúrgica y Geográfica2021-12-23info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdfhttps://revistasinvestigacion.unmsm.edu.pe/index.php/iigeo/article/view/2178510.15381/iigeo.v24i48.21785Revista del Instituto de investigación de la Facultad de minas, metalurgia y ciencias geográficas; Vol. 24 No. 48 (2021); 329-339Revista del Instituto de investigación de la Facultad de minas, metalurgia y ciencias geográficas; Vol. 24 Núm. 48 (2021); 329-3391682-30871561-0888reponame:Revistas - Universidad Nacional Mayor de San Marcosinstname:Universidad Nacional Mayor de San Marcosinstacron:UNMSMspahttps://revistasinvestigacion.unmsm.edu.pe/index.php/iigeo/article/view/21785/17521Derechos de autor 2021 Ricardo Fabian Peláez Mc Evoy, Jesús Alberto Torres Guerrahttp://creativecommons.org/licenses/by/4.0info:eu-repo/semantics/openAccessoai:revistasinvestigacion.unmsm.edu.pe:article/217852021-12-24T01:52:05Z
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