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Rupture process of the 2021 M7.4 Maduo earthquake and implication for deformation mode of the Songpan-Ganzi terrane in Tibetan Plateau

The deformation mode of the Tibetan Plateau is of crucial importance for understanding its construction and extrusion processes, as well as for the assessment of regional earthquake potential. Block motion and viscous flow models have been proposed to describe the deformation field but are not fully...

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Autores principales: Yue, Han, Shen, Zheng-Kang, Zhao, Zeyan, Wang, Teng, Cao, Bonan, Li, Zhen, Bao, Xuewei, Zhao, Li, Song, Xiaodong, Ge, Zengxi, Ren, Chunmei, Lu, Weifan, Zhang, Yong, Liu-Zeng, Jing, Wang, Min, Huang, Qinghua, Zhou, Shiyong, Xue, Lian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9191348/
https://www.ncbi.nlm.nih.gov/pubmed/35658079
http://dx.doi.org/10.1073/pnas.2116445119
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author Yue, Han
Shen, Zheng-Kang
Zhao, Zeyan
Wang, Teng
Cao, Bonan
Li, Zhen
Bao, Xuewei
Zhao, Li
Song, Xiaodong
Ge, Zengxi
Ren, Chunmei
Lu, Weifan
Zhang, Yong
Liu-Zeng, Jing
Wang, Min
Huang, Qinghua
Zhou, Shiyong
Xue, Lian
author_facet Yue, Han
Shen, Zheng-Kang
Zhao, Zeyan
Wang, Teng
Cao, Bonan
Li, Zhen
Bao, Xuewei
Zhao, Li
Song, Xiaodong
Ge, Zengxi
Ren, Chunmei
Lu, Weifan
Zhang, Yong
Liu-Zeng, Jing
Wang, Min
Huang, Qinghua
Zhou, Shiyong
Xue, Lian
author_sort Yue, Han
collection PubMed
description The deformation mode of the Tibetan Plateau is of crucial importance for understanding its construction and extrusion processes, as well as for the assessment of regional earthquake potential. Block motion and viscous flow models have been proposed to describe the deformation field but are not fully supported by modern geophysical observations. The 2021 Mw 7.4 Maduo earthquake, which occurred inside the Songpan-Ganzi terrane (SGT) in central-east Tibet, provides a chance to evaluate the associated deformation mode of the region. We conduct a joint inversion for this earthquake and resolve a bilateral rupture process, which is characterized by super- and subshear rupture velocities, respectively. We interpret this distinct rupture behavior to be the result of the respective slip concentration depths of the two ruptured segments. We analyze geological, seismic, and geodetic evidence and find that the SGT upper crust shows distributed shear deformation and distinct transverse anisotropy, which are associated with folded structures originating from compression of the paleo-Tethys ocean accretional prism realigned by following shear deformation. The SGT receives lateral shear loading from its NS boundary and accommodates a right-step sinistral motion across the terrane boundary faults. The unique tectonic setting of the SGT defines locations and behaviors of internal faulting and strong earthquakes such as the 2021 Maduo earthquake, with the latter occurring on slow-moving faults at intervals of several thousands of years.
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spelling pubmed-91913482022-12-03 Rupture process of the 2021 M7.4 Maduo earthquake and implication for deformation mode of the Songpan-Ganzi terrane in Tibetan Plateau Yue, Han Shen, Zheng-Kang Zhao, Zeyan Wang, Teng Cao, Bonan Li, Zhen Bao, Xuewei Zhao, Li Song, Xiaodong Ge, Zengxi Ren, Chunmei Lu, Weifan Zhang, Yong Liu-Zeng, Jing Wang, Min Huang, Qinghua Zhou, Shiyong Xue, Lian Proc Natl Acad Sci U S A Physical Sciences The deformation mode of the Tibetan Plateau is of crucial importance for understanding its construction and extrusion processes, as well as for the assessment of regional earthquake potential. Block motion and viscous flow models have been proposed to describe the deformation field but are not fully supported by modern geophysical observations. The 2021 Mw 7.4 Maduo earthquake, which occurred inside the Songpan-Ganzi terrane (SGT) in central-east Tibet, provides a chance to evaluate the associated deformation mode of the region. We conduct a joint inversion for this earthquake and resolve a bilateral rupture process, which is characterized by super- and subshear rupture velocities, respectively. We interpret this distinct rupture behavior to be the result of the respective slip concentration depths of the two ruptured segments. We analyze geological, seismic, and geodetic evidence and find that the SGT upper crust shows distributed shear deformation and distinct transverse anisotropy, which are associated with folded structures originating from compression of the paleo-Tethys ocean accretional prism realigned by following shear deformation. The SGT receives lateral shear loading from its NS boundary and accommodates a right-step sinistral motion across the terrane boundary faults. The unique tectonic setting of the SGT defines locations and behaviors of internal faulting and strong earthquakes such as the 2021 Maduo earthquake, with the latter occurring on slow-moving faults at intervals of several thousands of years. National Academy of Sciences 2022-06-03 2022-06-07 /pmc/articles/PMC9191348/ /pubmed/35658079 http://dx.doi.org/10.1073/pnas.2116445119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Physical Sciences
Yue, Han
Shen, Zheng-Kang
Zhao, Zeyan
Wang, Teng
Cao, Bonan
Li, Zhen
Bao, Xuewei
Zhao, Li
Song, Xiaodong
Ge, Zengxi
Ren, Chunmei
Lu, Weifan
Zhang, Yong
Liu-Zeng, Jing
Wang, Min
Huang, Qinghua
Zhou, Shiyong
Xue, Lian
Rupture process of the 2021 M7.4 Maduo earthquake and implication for deformation mode of the Songpan-Ganzi terrane in Tibetan Plateau
title Rupture process of the 2021 M7.4 Maduo earthquake and implication for deformation mode of the Songpan-Ganzi terrane in Tibetan Plateau
title_full Rupture process of the 2021 M7.4 Maduo earthquake and implication for deformation mode of the Songpan-Ganzi terrane in Tibetan Plateau
title_fullStr Rupture process of the 2021 M7.4 Maduo earthquake and implication for deformation mode of the Songpan-Ganzi terrane in Tibetan Plateau
title_full_unstemmed Rupture process of the 2021 M7.4 Maduo earthquake and implication for deformation mode of the Songpan-Ganzi terrane in Tibetan Plateau
title_short Rupture process of the 2021 M7.4 Maduo earthquake and implication for deformation mode of the Songpan-Ganzi terrane in Tibetan Plateau
title_sort rupture process of the 2021 m7.4 maduo earthquake and implication for deformation mode of the songpan-ganzi terrane in tibetan plateau
topic Physical Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9191348/
https://www.ncbi.nlm.nih.gov/pubmed/35658079
http://dx.doi.org/10.1073/pnas.2116445119
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