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Triggered dynamics in a model of different fault creep regimes

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2014
2204.pdf (669.7Kb)
Autori
Kostić, Srdan
Franović, Igor
Perc, Matjaz
Vasović, Nebojša
Todorović, Kristina
Članak u časopisu (Objavljena verzija)
Metapodaci
Prikaz svih podataka o dokumentu
Apstrakt
The study is focused on the effect of transient external force induced by a passing seismic wave on fault motion in different creep regimes. Displacement along the fault is represented by the movement of a spring-block model, whereby the uniform and oscillatory motion correspond to the fault dynamics in post-seismic and inter-seismic creep regime, respectively. The effect of the external force is introduced as a change of block acceleration in the form of a sine wave scaled by an exponential pulse. Model dynamics is examined for variable parameters of the induced acceleration changes in reference to periodic oscillations of the unperturbed system above the supercritical Hopf bifurcation curve. The analysis indicates the occurrence of weak irregular oscillations if external force acts in the post-seismic creep regime. When fault motion is exposed to external force in the inter-seismic creep regime, one finds the transition to quasiperiodic-or chaos-like motion, which we attribute to the... precursory creep regime and seismic motion, respectively. If the triggered acceleration changes are of longer duration, a reverse transition from inter-seismic to post-seismic creep regime is detected on a larger time scale.

Izvor:
Scientific World Journal, 2014, 4
Izdavač:
  • Nature Publishing Group, London

DOI: 10.1038/srep05401

ISSN: 2045-2322

PubMed: 24954397

WoS: 000337888600015

Scopus: 2-s2.0-84903220943
[ Google Scholar ]
17
15
URI
https://farfar.pharmacy.bg.ac.rs/handle/123456789/2206
Kolekcije
  • Radovi istraživača / Researchers’ publications
Institucija/grupa
Pharmacy
TY  - JOUR
AU  - Kostić, Srdan
AU  - Franović, Igor
AU  - Perc, Matjaz
AU  - Vasović, Nebojša
AU  - Todorović, Kristina
PY  - 2014
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/2206
AB  - The study is focused on the effect of transient external force induced by a passing seismic wave on fault motion in different creep regimes. Displacement along the fault is represented by the movement of a spring-block model, whereby the uniform and oscillatory motion correspond to the fault dynamics in post-seismic and inter-seismic creep regime, respectively. The effect of the external force is introduced as a change of block acceleration in the form of a sine wave scaled by an exponential pulse. Model dynamics is examined for variable parameters of the induced acceleration changes in reference to periodic oscillations of the unperturbed system above the supercritical Hopf bifurcation curve. The analysis indicates the occurrence of weak irregular oscillations if external force acts in the post-seismic creep regime. When fault motion is exposed to external force in the inter-seismic creep regime, one finds the transition to quasiperiodic-or chaos-like motion, which we attribute to the precursory creep regime and seismic motion, respectively. If the triggered acceleration changes are of longer duration, a reverse transition from inter-seismic to post-seismic creep regime is detected on a larger time scale.
PB  - Nature Publishing Group, London
T2  - Scientific World Journal
T1  - Triggered dynamics in a model of different fault creep regimes
VL  - 4
DO  - 10.1038/srep05401
ER  - 
@article{
author = "Kostić, Srdan and Franović, Igor and Perc, Matjaz and Vasović, Nebojša and Todorović, Kristina",
year = "2014",
abstract = "The study is focused on the effect of transient external force induced by a passing seismic wave on fault motion in different creep regimes. Displacement along the fault is represented by the movement of a spring-block model, whereby the uniform and oscillatory motion correspond to the fault dynamics in post-seismic and inter-seismic creep regime, respectively. The effect of the external force is introduced as a change of block acceleration in the form of a sine wave scaled by an exponential pulse. Model dynamics is examined for variable parameters of the induced acceleration changes in reference to periodic oscillations of the unperturbed system above the supercritical Hopf bifurcation curve. The analysis indicates the occurrence of weak irregular oscillations if external force acts in the post-seismic creep regime. When fault motion is exposed to external force in the inter-seismic creep regime, one finds the transition to quasiperiodic-or chaos-like motion, which we attribute to the precursory creep regime and seismic motion, respectively. If the triggered acceleration changes are of longer duration, a reverse transition from inter-seismic to post-seismic creep regime is detected on a larger time scale.",
publisher = "Nature Publishing Group, London",
journal = "Scientific World Journal",
title = "Triggered dynamics in a model of different fault creep regimes",
volume = "4",
doi = "10.1038/srep05401"
}
Kostić, S., Franović, I., Perc, M., Vasović, N.,& Todorović, K.. (2014). Triggered dynamics in a model of different fault creep regimes. in Scientific World Journal
Nature Publishing Group, London., 4.
https://doi.org/10.1038/srep05401
Kostić S, Franović I, Perc M, Vasović N, Todorović K. Triggered dynamics in a model of different fault creep regimes. in Scientific World Journal. 2014;4.
doi:10.1038/srep05401 .
Kostić, Srdan, Franović, Igor, Perc, Matjaz, Vasović, Nebojša, Todorović, Kristina, "Triggered dynamics in a model of different fault creep regimes" in Scientific World Journal, 4 (2014),
https://doi.org/10.1038/srep05401 . .

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