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Spin and twist motions in the earthquake preparation processes: Analysis of records

Autorzy
Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Three seismic events in L’Aquila region and one in western Greece have been chosen for comparative analysis of two kinds of seismic motions, spin and twist. These torque components of the seismic field were detected in horizontal plane with the rotational seismometers. Homologous parts were sought in the signals of spin and twist components – curve of one component was compared to the other directly and after transformations: phase-shifting and sign reversal. To achieve better clarity, these operations were done on the data divided into several descendant signals with the use of band-pass filtration. Conformities of spin and twist, revealed in this way, are assumed to be results of distant processes in the source, where relations between rotational and shear motions include retardations. The analysis embraced also the time-period preceding an earthquake, and the conformities found here are attributed to phenomena occurring in the focus just before the rupture.
Czasopismo
Rocznik
Strony
5--28
Opis fizyczny
Bibliogr. 21 poz.
Twórcy
autor
  • Institute of Geophysics, Polish Academy of Sciences, Warszawa, Poland, kt@igf.edu.pl
Bibliografia
  • Cochard, A., H. Igel, B. Schuberth, W. Suryanto, A. Velikoseltsev, U. Schreiber, J. Wassermann, F. Scherbaum, and D. Vollmer (2006), Rotational motions in seismology: theory, observation, simulation. In: R. Teisseyre, M. Takeo, and E. Majewski (eds.), Earthquake Source Asymmetry, Structural Media and Rotation Effects, Springer-Verlag, Berlin-Heidelberg, chapt. 30, 391-412.
  • Górski, M., and K.P. Teisseyre (2006), Glacier motion: seismic events and rotation/tilt phenomena. In: R. Teisseyre, M. Takeo, and E. Majewski (eds.), Earthquake Source Asymmetry, Structural Media and Rotation Effects, Springer-Verlag, Berlin-Heidelberg, chapt. 15, 199-215.
  • Knopoff, L., and Y.T. Chen (2009), Single-couple component of far-field radiation from dynamical fractures, Bull. Seism. Soc. Am. 99, 2B, 1091-1102.
  • Kozák, J.T. (2006), Development of earthquake rotational effect study. In: R. Teisseyre, M. Takeo, and E. Majewski (eds.), Earthquake Source Asymmetry, Structural Media and Rotation Effects, Springer-Verlag, Berlin-Heidelberg, chapt. 1, 3-10.
  • Kozák, J.T. (2009), Tutorial on earthquake rotational effects: Historical examples, Bull. Seism. Soc. Am. 99, 2B, 998-1010.
  • Kwiatek, G. (2003), A search for the slow initial phase generated by seismic events at a copper mine in Poland, Acta Geophys. Pol. 54, 4, 369-385.
  • Lee, W.H.K., M. Çelebi, M.I. Todorovska, and H. Igel (2009), Introduction to the special issue on rotational seismology and engineering applications, Bull. Seism. Soc. Am. 99, 2B, 945-957.
  • Lin, C-J., C-C. Liu, and W.H.K. Lee (2009), Recording rotational and translational ground motions of two TAIGER explosions in north-eastern Taiwan on March 4, 2008, Bull. Seism. Soc. Am. 99, 2B, 1237-1250.
  • Moriya, T., and R. Teisseyre (2006), Design of rotation seismometer and non-linear behaviour of rotation components of earthquakes. In: R. Teisseyre, M. Takeo, and E. Majewski (eds.), Earthquake Source Asymmetry, Structural Media and Rotation Effects, Springer-Verlag, Berlin-Heidelberg, chapt. 32, 439-450.
  • Sobolev, G., and A. Lyubushin (2010), Periodical oscillations of microseisms before the Sumatra earthquake of December 26, 2004. In: V. De Rubeis et al. (eds.), Synchronization and Triggering: From Fracture to Earthquake Processes, Springer.
  • Sobolev, G., A. Lyubushin, and N.A. Zakzhevskaya (2010), Synchronizations of microseismic oscillations as the indicators of the instability of a seismically active region. In: V. De Rubeis et al. (eds.), Synchronization and Triggering: From Fracture to Earthquake Processes, Springer.
  • Teisseyre, R. (2009), Tutorial on new developments in the physics of rotational motions, Bull. Seism. Soc. Am. 99, 2B, 1028-1039.
  • Teisseyre, R., and M. Górski (2008), Introduction to asymmetric continuum: Fundamental point deformations. In: R. Teisseyre, H. Nagahama, and E. Majewski (eds.), Physics of Asymmetric Continuum: Extreme and Fracture Processes, Springer-Verlag, Berlin-Heidelberg, chapt. 1, 3-16.
  • Teisseyre, R., and M. Górski (2009), Fundamental deformations in asymmetric continuum, Bull. Seism. Soc. Am. 99, 2B, 1132-1136.
  • Teisseyre, R., K.P. Teisseyre, T. Moriya, and P. Palangio (2003a), Seismic rotation waves related to volcanic, mining and seismic events: near-field and micromorphic motions, Acta Geophys. Pol. 51, 4, 409-431.
  • Teisseyre, R., J. Suchcicki, K.P. Teisseyre, and P. Palangio (2003b), Seismic rotation waves: basic elements of theory and recording, Ann. Geophys. 46, 4,671-685.
  • Teisseyre, R., M. Takeo, and E. Majewski (eds.) (2006), Earthquake Source Asymmetry, Structural Media and Rotation Effects, Springer-Verlag, Berlin-Heidelberg, 582 pp.
  • Teisseyre, R., M. Górski, and K.P. Teisseyre (2008), Fracture processes: Spin and twist-shear coincidence. In: R. Teisseyre, H. Nagahama, and E. Majewski (eds.), Physics of Asymmetric Continuum: Extreme and Fracture Processes, Springer-Verlag, Berlin-Heidelberg, chapt. 8, 111-122.
  • Widmer-Schnidrig, R., and W. Zürn, (2009), Perspectives for ring laser gyroscopes in low-frequency seismology, Bull. Seism. Soc. Am. 99, 2B, 1199-1206.
  • Wiszniowski, J., and K.P. Teisseyre (2010), A method to minimize errors in seismic differential measurement, Acta Geophys. 58, 4, 604-623.
  • Wiszniowski, J., A. Skrzyński, and J. Suchcicki (2003), Recording rotations with a pendulum seismometer: A sensor with reduced sensitivity to linear motions, Acta Geophys. Pol. 51, 4, 433-446.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL1-0012-0015
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