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The source scaling and seismic productivity of slow slip transients
- Source :
- Science Advances, 7 (32), Science Advances
- Publication Year :
- 2021
- Publisher :
- AAAS, 2021.
-
Abstract
- Aseismic and seismic slip scaling indicate similar physics governing tremor and earthquake swarms during slow slip events.<br />Slow slip events (SSEs) represent a slow faulting process leading to aseismic strain release often accompanied by seismic tremor or earthquake swarms. The larger SSEs last longer and are often associated with intense and energetic tremor activity, suggesting that aseismic slip controls tremor genesis. A similar pattern has been observed for SSEs that trigger earthquake swarms, although no comparative studies exist on the source parameters of SSEs and tremor or earthquake swarms. We analyze the source scaling of SSEs and associated tremor- or swarm-like seismicity through our newly compiled dataset. We find a correlation between the aseismic and seismic moment release indicating that the shallower SSEs produce larger seismic moment release than deeper SSEs. The scaling may arise from the heterogeneous frictional and rheological properties of faults prone to SSEs and is mainly controlled by temperature. Our results indicate that similar physical phenomena govern tremor and earthquake swarms during SSEs.
- Subjects :
- Scaling law
010504 meteorology & atmospheric sciences
Physics::Medical Physics
Slip (materials science)
Induced seismicity
010502 geochemistry & geophysics
Earthquake swarm
01 natural sciences
Physics::Geophysics
Physics::Fluid Dynamics
Physical phenomena
Aseismic slip
Scaling
Research Articles
0105 earth and related environmental sciences
Multidisciplinary
SciAdv r-articles
Geology
slow slip, seismic tremor, seismic swarms, scaling laws, earthquakes
Physics::Classical Physics
Geophysics
13. Climate action
Seismic moment
Seismology
Research Article
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Science Advances, 7 (32), Science Advances
- Accession number :
- edsair.doi.dedup.....e6e162caa1fb85f4533f6f6aacb0b4cf