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Seismic Monitoring of Poland - Description and Results of Temporary Seismic Project with Mobile Seismic Network

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper describes a temporary seismic project aimed at developing the national database of natural seismic activity for seismic hazard assessment, officially called “Monitoring of Seismic Hazard of Territory of Poland” (MSHTP). Due to low seismicity of Poland, the project was focused on events of magnitude range 1-3 in selected regions in order to maximize the chance of recording any natural event. The project used mobile seismic stations and was divided into two stages. Five-year measurements brought over one hundred natural seismic events of magnitudes ML range 0.5-3.8. Most of them were located in the Podhale region in the Carpathians. Together with previously recorded events this made it possible to conduct a preliminary study on ground motion prediction equation for this region. Only one natural event, of magnitude ML = 3.8, was recorded outside the Carpathians in a surprising location in central-west Poland.
Czasopismo
Rocznik
Strony
17--44
Opis fizyczny
Bibliogr. 34 poz., rys., tab., wykr.
Twórcy
  • Institute of Geophysics, Polish Academy of Sciences, Warszawa, Poland
  • Institute of Geophysics, Polish Academy of Sciences, Warszawa, Poland
  • Institute of Geophysics, Polish Academy of Sciences, Warszawa, Poland
Bibliografia
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  • [6] Cauzzi, C., and E. Faccioli (2008), Broadband (0.05 to 20 s) prediction of displacement response spectra based on worldwide digital records, J. Seismol. 12, 4, 453-475, DOI: 10.1007/s10950-008-9098-y.
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  • [8] Delavaud, E., F. Cotton, S. Akkar, F. Scherbaum, L. Danciu, C. Beauval, S. Drouet, J. Douglas, R. Basili, M.A. Sandikkaya, M. Segou, E. Faccioli, and N. Theodoulidis (2012), Toward a ground-motion logic tree for probabilistic seismic hazard assessment in Europe, J. Seismol. 16, 3, 451-473, DOI:10.1007/s10950-012-9281-z.
  • [9] Domański, B.M. (2007), Source parameters of the 2004 Kaliningrad earthquakes, Acta Geophys. 55, 3, 267-287, DOI: 10.2478/s11600-007-0021-7.
  • [10] Grad, M., A. Špičák, G.R. Keller, A. Guterch, M. Brož, E. Hegedüs, and Working Group (2003), SUDETES 2003 seismic experiment, Stud. Geophys. Geod. 47, 3, 681-689, DOI: 10.1023/A:1024732206210.
  • [11] Guterch, A., M. Grad, H. Thybo, and G.R. Keller (1999), POLONAISE’97 – an international seismic experiment between Precambrian and Variscan Europe in Poland, Tectonophysics 314, 1-3, 101-121, DOI:10.1016/S00401951(99)00239-5.
  • [12] Guterch, A., M. Grad, G.R. Keller, K. Posgay, J. Vozár, A. Špičák, E. Brückl, Z. Hajnal, H. Thybo, O. Selvi, and CELEBRATION 2000 Experiment Team (2003), CELEBRATION 2000 seismic experiment, Stud. Geophys. Geod. 47, 3, 659-669, DOI: 10.1023/A:1024728005301.
  • [13] Guterch, B. (2006), Seismic events in the Orawa – Nowy Targ Basin, Western Carpathians, November 30, 2004 – December 2005, Acta Geodyn. Geomater. 3, 3, 85-95.
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  • [16] Guterch, B., H. Lewandowska-Marciniak, and J. Niewiadomski (2005), Earthquakes recorded in Poland along the Pieniny Klippen Belt, Western Carpathians, Acta Geophys. Pol. 53, 1, 27-45.
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  • [19] Joyner, W.B., and D.M. Boore (1993), Methods for regression analysis of strongmotion data, Bull. Seismol. Soc. Am. 83, 2, 469-487.
  • [20] Lizurek, G., and P. Wiejacz (2011), Moment tensor solution and physical parameters of selected recent seismic events at Rudna Copper Mine. In: A.F. Idziak and R. Dubiel (eds.), Geophysics in Mining and Environmental Protection, Geoplanet: Earth and Planetary Sciences, Springer, Berlin Heidelberg, 11-19, DOI: 10.1007/978-3-642-19097-1_2.
  • [21] Lizurek, G., B. Plesiewicz, P. Wiejacz, J. Wiszniowski, and J. Trojanowski (2013), Seismic event near Jarocin (Poland), Acta Geophys. 61, 1, 26-36, DOI:10.2478/s11600-012-0052-6.
  • [22] Olszewski, J., and J. Wiszniowski (1993), A microcomputer-based seismic station, Pol. Tech. Rev. 1, 18-21.
  • [23] Orlecka-Sikora, B., S. Lasocki, G. Lizurek, and Ł. Rudziński (2012), Response of seismic activity in mines to the stress changes due to mining induced strong seismic events, Int. J. Rock Mech. Min. Sci. 53, 151-158, DOI: 10.1016/j.ijrmms.2012.05.010.
  • [24] Park, J., C.R. Lindberg, and F.L. Vernon III (1987), Multitaper spectral analysis of high-frequency seismograms, J. Geophys. Res. 92, B12, 12675-12684, DOI: 10.1029/JB092iB12p12675.
  • [25] Schenk, V., Z. Schenková, P. Kottnauer, B. Guterch, and P. Labák (2000), Earthquake hazard for the Czech Republic, Poland and Slovakia – Contribution to the ILC/IASPEI Global Seismic Hazard Assessment Program. In: G.A. Papadopoulos, T, Murty, S. Venkatesh, and R. Blong (eds.), Natural Hazards. State-of-the-Art at the End of the Second Millennium, Kluwer Academic Publ., Dordrecht, 331-345, DOI: 10.1007/978-94-017-2386-2_14.
  • [26] Toro, G.R. (2002), Modification of the Toro et al. (1997) attenuation equations for large magnitudes and short distances, Tech. Rep., Risk Engineering, Boulder, Colorado, USA.
  • [27] Wiejacz, P. (2006), The Kaliningrad earthquakes of September 21, 2004, Acta Geodyn. Geomater. 3, 2, 7-16.
  • [28] Wiejacz, P., and W. Dębski (2009), Podhale, Poland, earthquake of November 30, 2004, Acta Geophys. 57, 2, 346-366, DOI:10.2478/s116000090007-8.
  • [29] Wiejacz, P., and Ł. Rudziński (2010), Seismic event of January 22, 2010 near Bełchatów, Poland, Acta Geophys. 58, 6, 988-994, DOI:10.2478/s11600010-0030-9.
  • [30] Wiejacz, P., and J. Wiszniowski (2006), Moment magnitude determination of local seismic events recorded at selected Polish seismic stations, Acta Geophys. 54, 1, 15-32, DOI: 10.2478/s11600-006-0003-1.
  • [31] Wilde-Piórko, M., W.H. Geissler, J. Plomerová, M. Grad, V. Babuška, E. Brückl, J. Cyziene, W. Czuba, R. England, E. Gaczyński, R. Gazdova, S. Gregersen, A. Guterch, W. Hanka, E. Hegedűs, B. Heuer, P. Jedlička, J. Lazauskiene, G.R. Keller, R. Kind, K. Klinge, P. Kolinsky, K. Komminaho, E. Kozlovskaya, F. Krüger, T. Larsen, M. Majdański, J. Málek, G. Motuza, O. Novotný, R. Pietrasiak, T. Plenefisch, B. Růžek, S. Sliaupa, P. Środa, M. Świeczak, T. Tiira, P. Voss, and P. Wiejacz (2008), PASSEQ 2006-2008: Passive seismic experiment in Trans-European Suture Zone, Stud. Geophys. Geod. 52, 3, 439-448, DOI: 10.1007/s11200-008-0030-2.
  • [32] Wiszniowski, J. (2000), Application of real time recurrent neural network for seismic event detection, Acta Geophys. Pol. 48, 1, 1-26.
  • [33] Wiszniowski, J., B.M. Plesiewicz, and J. Trojanowski (2014), Application of real time recurrent neural network for detection of small natural earthquakes in Poland, Acta Geophys. 62, 3, 469-485, DOI: 10.2478/s11600-013-0140-2.
  • [34] Zuberek, W.M., and K. Jochymczyk (eds.) (2010), Origin and Seismic Hazard Assessment in the Upper Silesian Coal Basin, Wyd. Uniwersytetu Śląskiego, Katowice, 95 pp. (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-55a28adc-8b4c-4e54-8ca3-6d588b315f36
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