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Review and Update on Some Connections between a Spring-Block SOC Model and Actual Seismicity in the Case of Subduction Zones

The self-organized critical (SOC) spring-block models are accessible and powerful computational tools for the study of seismic subduction. This work aims to highlight some important findings through an integrative approach of several actual seismic properties, reproduced by using the Olami, Feder, a...

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Autores principales: Salinas-Martínez, Alfredo, Aguilar-Molina, Ana María, Pérez-Oregon, Jennifer, Angulo-Brown, Fernando, Muñoz-Diosdado, Alejandro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9024716/
https://www.ncbi.nlm.nih.gov/pubmed/35455099
http://dx.doi.org/10.3390/e24040435
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author Salinas-Martínez, Alfredo
Aguilar-Molina, Ana María
Pérez-Oregon, Jennifer
Angulo-Brown, Fernando
Muñoz-Diosdado, Alejandro
author_facet Salinas-Martínez, Alfredo
Aguilar-Molina, Ana María
Pérez-Oregon, Jennifer
Angulo-Brown, Fernando
Muñoz-Diosdado, Alejandro
author_sort Salinas-Martínez, Alfredo
collection PubMed
description The self-organized critical (SOC) spring-block models are accessible and powerful computational tools for the study of seismic subduction. This work aims to highlight some important findings through an integrative approach of several actual seismic properties, reproduced by using the Olami, Feder, and Christensen (OFC) SOC model and some variations of it. A few interesting updates are also included. These results encompass some properties of the power laws present in the model, such as the Gutenberg-Richter (GR) law, the correlation between the parameters a and b of the linear frequency-magnitude relationship, the stepped plots for cumulative seismicity, and the distribution of the recurrence times of large earthquakes. The spring-block model has been related to other relevant properties of seismic phenomena, such as the fractal distribution of fault sizes, and can be combined with the work of Aki, who established an interesting relationship between the fractal dimension and the b-value of the Gutenberg-Richter relationship. Also included is the work incorporating the idea of asperities, which allowed us to incorporate several inhomogeneous models in the spring-block automaton. Finally, the incorporation of a Ruff-Kanamori-type diagram for synthetic seismicity, which is in reasonable accordance with the original Ruff and Kanamori diagram for real seismicity, is discussed.
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spelling pubmed-90247162022-04-23 Review and Update on Some Connections between a Spring-Block SOC Model and Actual Seismicity in the Case of Subduction Zones Salinas-Martínez, Alfredo Aguilar-Molina, Ana María Pérez-Oregon, Jennifer Angulo-Brown, Fernando Muñoz-Diosdado, Alejandro Entropy (Basel) Article The self-organized critical (SOC) spring-block models are accessible and powerful computational tools for the study of seismic subduction. This work aims to highlight some important findings through an integrative approach of several actual seismic properties, reproduced by using the Olami, Feder, and Christensen (OFC) SOC model and some variations of it. A few interesting updates are also included. These results encompass some properties of the power laws present in the model, such as the Gutenberg-Richter (GR) law, the correlation between the parameters a and b of the linear frequency-magnitude relationship, the stepped plots for cumulative seismicity, and the distribution of the recurrence times of large earthquakes. The spring-block model has been related to other relevant properties of seismic phenomena, such as the fractal distribution of fault sizes, and can be combined with the work of Aki, who established an interesting relationship between the fractal dimension and the b-value of the Gutenberg-Richter relationship. Also included is the work incorporating the idea of asperities, which allowed us to incorporate several inhomogeneous models in the spring-block automaton. Finally, the incorporation of a Ruff-Kanamori-type diagram for synthetic seismicity, which is in reasonable accordance with the original Ruff and Kanamori diagram for real seismicity, is discussed. MDPI 2022-03-22 /pmc/articles/PMC9024716/ /pubmed/35455099 http://dx.doi.org/10.3390/e24040435 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Salinas-Martínez, Alfredo
Aguilar-Molina, Ana María
Pérez-Oregon, Jennifer
Angulo-Brown, Fernando
Muñoz-Diosdado, Alejandro
Review and Update on Some Connections between a Spring-Block SOC Model and Actual Seismicity in the Case of Subduction Zones
title Review and Update on Some Connections between a Spring-Block SOC Model and Actual Seismicity in the Case of Subduction Zones
title_full Review and Update on Some Connections between a Spring-Block SOC Model and Actual Seismicity in the Case of Subduction Zones
title_fullStr Review and Update on Some Connections between a Spring-Block SOC Model and Actual Seismicity in the Case of Subduction Zones
title_full_unstemmed Review and Update on Some Connections between a Spring-Block SOC Model and Actual Seismicity in the Case of Subduction Zones
title_short Review and Update on Some Connections between a Spring-Block SOC Model and Actual Seismicity in the Case of Subduction Zones
title_sort review and update on some connections between a spring-block soc model and actual seismicity in the case of subduction zones
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9024716/
https://www.ncbi.nlm.nih.gov/pubmed/35455099
http://dx.doi.org/10.3390/e24040435
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