Shear wave splitting as a proxy for stress forecast of the case of the 2006 Manyas-Kus Golu (<i>M</i><sub>b</sub> = 5.3) earthquake
The 2006 <i>M</i><sub>b</sub> = 5.3 Manyas-Kus Golu (Manyas) earthquake has been retrospectively "stress-forecasted" using variations in time-delays of seismic shear wave splitting to evaluate the time and magnitude at which stress-modified microcracking reaches fra...
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2012-04-01
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doaj-c68ffb682f244d0ab9a011d9e5a01f712020-11-24T23:45:56ZengCopernicus PublicationsNatural Hazards and Earth System Sciences1561-86331684-99812012-04-011241073108410.5194/nhess-12-1073-2012Shear wave splitting as a proxy for stress forecast of the case of the 2006 Manyas-Kus Golu (<i>M</i><sub>b</sub> = 5.3) earthquakeS. ErgintavO. TanS. CrampinN. M. OzelG. PolatThe 2006 <i>M</i><sub>b</sub> = 5.3 Manyas-Kus Golu (Manyas) earthquake has been retrospectively "stress-forecasted" using variations in time-delays of seismic shear wave splitting to evaluate the time and magnitude at which stress-modified microcracking reaches fracture criticality within the stressed volume where strain is released. We processed micro earthquakes recorded by 29 TURDEP (Multi-Disciplinary Earthquake Research in High Risk Regions of Turkey) and 33 KOERI (Kandilli Observatory and Earthquake Research Institute) stations in the Marmara region by using the aspect-ratio cross-correlation and systematic analysis of crustal anisotropy methods. The aim of the analysis is to determine changes in delay-times, hence changes in stress, before and after the 2006 Manyas earthquake. We observed that clear decreases in delay times before the impending event, especially at the station GEMT are consistent with the anisotropic poro-elasticity (APE) model of fluid-rock deformation, but we could not observe similar changes at other stations surrounding the main event. The logarithms of the duration of the stress-accumulation are proportional (self-similar) to the magnitude of the impending event. Although time and magnitude of th 2005 Manyas earthquake could have been stress-forecasted, as has been recognized elsewhere, shear-wave splitting does not appear to provide direct information about the location of impending earthquakes.http://www.nat-hazards-earth-syst-sci.net/12/1073/2012/nhess-12-1073-2012.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
S. Ergintav O. Tan S. Crampin N. M. Ozel G. Polat |
spellingShingle |
S. Ergintav O. Tan S. Crampin N. M. Ozel G. Polat Shear wave splitting as a proxy for stress forecast of the case of the 2006 Manyas-Kus Golu (<i>M</i><sub>b</sub> = 5.3) earthquake Natural Hazards and Earth System Sciences |
author_facet |
S. Ergintav O. Tan S. Crampin N. M. Ozel G. Polat |
author_sort |
S. Ergintav |
title |
Shear wave splitting as a proxy for stress forecast of the case of the 2006 Manyas-Kus Golu (<i>M</i><sub>b</sub> = 5.3) earthquake |
title_short |
Shear wave splitting as a proxy for stress forecast of the case of the 2006 Manyas-Kus Golu (<i>M</i><sub>b</sub> = 5.3) earthquake |
title_full |
Shear wave splitting as a proxy for stress forecast of the case of the 2006 Manyas-Kus Golu (<i>M</i><sub>b</sub> = 5.3) earthquake |
title_fullStr |
Shear wave splitting as a proxy for stress forecast of the case of the 2006 Manyas-Kus Golu (<i>M</i><sub>b</sub> = 5.3) earthquake |
title_full_unstemmed |
Shear wave splitting as a proxy for stress forecast of the case of the 2006 Manyas-Kus Golu (<i>M</i><sub>b</sub> = 5.3) earthquake |
title_sort |
shear wave splitting as a proxy for stress forecast of the case of the 2006 manyas-kus golu (<i>m</i><sub>b</sub> = 5.3) earthquake |
publisher |
Copernicus Publications |
series |
Natural Hazards and Earth System Sciences |
issn |
1561-8633 1684-9981 |
publishDate |
2012-04-01 |
description |
The 2006 <i>M</i><sub>b</sub> = 5.3 Manyas-Kus Golu (Manyas) earthquake has been retrospectively "stress-forecasted" using variations in time-delays of seismic shear wave splitting to evaluate the time and magnitude at which stress-modified microcracking reaches fracture criticality within the stressed volume where strain is released. We processed micro earthquakes recorded by 29 TURDEP (Multi-Disciplinary Earthquake Research in High Risk Regions of Turkey) and 33 KOERI (Kandilli Observatory and Earthquake Research Institute) stations in the Marmara region by using the aspect-ratio cross-correlation and systematic analysis of crustal anisotropy methods. The aim of the analysis is to determine changes in delay-times, hence changes in stress, before and after the 2006 Manyas earthquake. We observed that clear decreases in delay times before the impending event, especially at the station GEMT are consistent with the anisotropic poro-elasticity (APE) model of fluid-rock deformation, but we could not observe similar changes at other stations surrounding the main event. The logarithms of the duration of the stress-accumulation are proportional (self-similar) to the magnitude of the impending event. Although time and magnitude of th 2005 Manyas earthquake could have been stress-forecasted, as has been recognized elsewhere, shear-wave splitting does not appear to provide direct information about the location of impending earthquakes. |
url |
http://www.nat-hazards-earth-syst-sci.net/12/1073/2012/nhess-12-1073-2012.pdf |
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