Intermittency of earthquake cycles in a model of a three-degree-of-freedom spring-block system
We herein report the results of some numerical simulations of complex earthquake cycles using a three-degree-of-freedom spring-block model with a rate- and state-dependent friction law. The model consists of three blocks on a conveyor belt that is moving at a steady rate. Observed complex slip behav...
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2014-08-01
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Series: | Nonlinear Processes in Geophysics |
Online Access: | http://www.nonlin-processes-geophys.net/21/841/2014/npg-21-841-2014.pdf |
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doaj-587d4527dce9441f9496403f787280092020-11-25T00:31:08ZengCopernicus PublicationsNonlinear Processes in Geophysics1023-58091607-79462014-08-0121484185310.5194/npg-21-841-2014Intermittency of earthquake cycles in a model of a three-degree-of-freedom spring-block systemY. Abe0N. Kato1ITOCHU Techno-Solutions Corporation, Tokyo, JapanEarthquake Research Institute, University of Tokyo, Tokyo, JapanWe herein report the results of some numerical simulations of complex earthquake cycles using a three-degree-of-freedom spring-block model with a rate- and state-dependent friction law. The model consists of three blocks on a conveyor belt that is moving at a steady rate. Observed complex slip behaviour in the simulations is classified into five slip patterns, and for each of these the parameter dependence of the slip patterns is demonstrated by means of phase diagrams. Aperiodic slip patterns occur for wider ranges of the parameter space in the three-block system than in the two-block system. Chaotic slip behaviour known here as "intermittency" is found in the three-block system, in which two different slip patterns occur alternately with variable durations. By calculating Lyapunov exponents, we quantify the dependence of slip evolution on the initial conditions for each slip pattern. For cases where intermittent slip patterns occur, the time evolution of the Lyapunov exponent is correlated with changes in slip behaviour.http://www.nonlin-processes-geophys.net/21/841/2014/npg-21-841-2014.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Y. Abe N. Kato |
spellingShingle |
Y. Abe N. Kato Intermittency of earthquake cycles in a model of a three-degree-of-freedom spring-block system Nonlinear Processes in Geophysics |
author_facet |
Y. Abe N. Kato |
author_sort |
Y. Abe |
title |
Intermittency of earthquake cycles in a model of a three-degree-of-freedom spring-block system |
title_short |
Intermittency of earthquake cycles in a model of a three-degree-of-freedom spring-block system |
title_full |
Intermittency of earthquake cycles in a model of a three-degree-of-freedom spring-block system |
title_fullStr |
Intermittency of earthquake cycles in a model of a three-degree-of-freedom spring-block system |
title_full_unstemmed |
Intermittency of earthquake cycles in a model of a three-degree-of-freedom spring-block system |
title_sort |
intermittency of earthquake cycles in a model of a three-degree-of-freedom spring-block system |
publisher |
Copernicus Publications |
series |
Nonlinear Processes in Geophysics |
issn |
1023-5809 1607-7946 |
publishDate |
2014-08-01 |
description |
We herein report the results of some numerical simulations of complex
earthquake cycles using a three-degree-of-freedom spring-block model with a
rate- and state-dependent friction law. The model consists of three blocks
on a conveyor belt that is moving at a steady rate. Observed complex slip
behaviour in the simulations is classified into five slip patterns, and for
each of these the parameter dependence of the slip patterns is demonstrated
by means of phase diagrams. Aperiodic slip patterns occur for wider ranges
of the parameter space in the three-block system than in the two-block
system. Chaotic slip behaviour known here as "intermittency" is found in
the three-block system, in which two different slip patterns occur
alternately with variable durations. By calculating Lyapunov exponents, we
quantify the dependence of slip evolution on the initial conditions for each
slip pattern. For cases where intermittent slip patterns occur, the time
evolution of the Lyapunov exponent is correlated with changes in slip
behaviour. |
url |
http://www.nonlin-processes-geophys.net/21/841/2014/npg-21-841-2014.pdf |
work_keys_str_mv |
AT yabe intermittencyofearthquakecyclesinamodelofathreedegreeoffreedomspringblocksystem AT nkato intermittencyofearthquakecyclesinamodelofathreedegreeoffreedomspringblocksystem |
_version_ |
1725323407201927168 |