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Tytuł artykułu

Strain rates, seismic activity and its temporal variations within the Pannonian Basin

Autorzy
Identyfikatory
Warianty tytułu
Konferencja
Geodetic and Geodynamic Programmes of the CEI (11 Symposium; 25-30.04.2004; Nice, France)
Języki publikacji
EN
Abstrakty
EN
The spatio-temporal patterns are used for the study of the intraplate seismicity of the Pannonian basin. The earthquake occurrence is connected to the strain rate values with the use of the Kostrov(1974) equation. It is shown that in the Pannonian basin the seismic rates are l0-7-l0-6. These values were derived from the local earthquake catalogues of the area of Komarom, Dunaharaszti (near Budapest) and Kecskemet. The method used in present study is based on combination of seismological and geodetic tools and it can be used in the future for the study of the seismic conditions of areas with reduced earthquake activity.
Czasopismo
Rocznik
Tom
Strony
149--156
Opis fizyczny
Bibliogr. 18 poz., tab., wykr.
Twórcy
autor
  • Geodetic and Geophysical Research Institute, Seismological Observatory
autor
  • Geodetic and Geophysical Research Institute, Seismological Observatory
autor
  • Geodetic and Geophysical Research Institute, Seismological Observatory
Bibliografia
  • 1. Agnew D.C., 1986, Strainmeters and tiltmeters, Rev. of Geophys., 24, 3, 579-624.
  • 2. Båth M., Duda S., 1964, Ann. Geofis., 17, 353.
  • 3. Grenerczy Gy., Kenyeres A., Fejes I.,2000, Present crustal movements and strain distribution in Central Europe inferred from GPS Measurements, J. Geophys. Res., 105, B9, 21, 835-21, 846.
  • 4. Grüntal G., 2000, Seismic hazard assessment for Central, North and Northwest Europe: GSHAP Region 3, Annali di Geofisica, 42, 6, 999-1011 .
  • 5. Guseva T.V., Misin A.B., Skovorodkin Ju.P., 1996, Present horizontal displacements at different scale levels, Physics of the Earth, 12, 86-91 (in Russian).
  • 6. Hanks T.C., Kanamori H., 1979, A moment magnitude scale, J. Geophys. Res., 84, B5, 2348-2350.
  • 7. Huang Y., Saleur H., Sammis C., Somette D., 1998, Precursors, aftershocks, critically and self organised critically. Europhysics Letters, 41, 43-48.
  • 8. Kasahara K.,1981, Earthquake mechanics, Cambridge University Press
  • 9. Kostrov B.V., 1974, Seismic moment and energy of earthquakes, and seismic flow of rock. Izv. Acad Sci. USSR, Phys. Solid Earth, 1, 23-40.
  • 10. Latynina L.A., Karamaleeva R.M., 1978, Deformographic measurements. Nauka, Moscow (in Russian).
  • 11. Mentes Gy., 1994, Instruments for precise determination of horizontal deformations in the Pannonian basin, Acta Geod. Geoph. Hung., 29, 1-2, 161-177.
  • 12. Mentes Gy., 1995, In-situ calibration of quartz tube extensometers, Marees Terrestres Bulletin d'Informations,121, 9070-9075.
  • 13. MiháIy Sz., 2004, Paper presented at the session of the Geodetic Commission of the Hungarian Academy of Sciences.
  • 14. Mónus P., 2004, Focal mechanisms of earthquakes in Hungary and their tectonical relations. Paper presented at the annual meeting of Research Centre of Earth Sciences of the Hungarian Academy of Sciences.
  • 15. Varga, P., 1984, Long-term variations recorded by extensometers. Journal of Geophysics, 55, 68-70.
  • 16. Varga P., Szeidovitz Gy., Gutdeutsch R., 2001, Isoseismal map and tectonical position of the Komárom earthquake of 1763. Acta Geodetica et Geophysica., 36(1), 97-108.
  • 17. Ward S.N., 1998,0n the consistency of earthquake moment rates, geological fault data, and space geodetic strain: the United States. Geophys. J. lnt., 134, 172-186.
  • 18. Zsiros T., 2000, Seismicity and seismic risk of the Hungarian Basin: The Hungarian earthquake catalogue. Budapest, GGKI.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-PWA3-0016-0001
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