PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Verification of the seismic P‑wave velocities under Moho boundary: Central Poland case study, LUMP profile

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The tectonic settings investigated by several seismic projects in previous research targeting the structure in Central Poland mainly focused on the Earth’s crust. In this paper, we present P-wave velocity verification in the uppermost mantle beneath LUMP profile towards SSE-NNW. Using recordings of 36 DATA-CUBE recorders from ca. 300–490 km far earthquake in coal mine “Janina” in southern Poland, we calculated travel times to verify P-wave velocity below the Moho boundary from previous studies. It shows that a significantly lower mean velocity value should be used for the upper mantle while counting these offsets of travel times in the SSE-NNW direction than that used on previous profiles. We present two possible models: first, the most simple one that fits the observed first arrivals, and the second with a low-velocity layer beneath the Moho boundary. In both cases, we used a priori crustal model focusing only on P-wave velocity in the uppermost mantle. Both of them significantly improved adjustment of travel times to the observed data. To evaluate the tendency of adopting too high velocities beneath the Moho, we used also 11 broadband stations, Reftek 151-121 “Observer”, from “13 BB Star” passive experiment and 6 STS-2 seismometers from permanent stations of the Polish Seismological Network (PLSN).
Czasopismo
Rocznik
Strony
41--57
Opis fizyczny
Bibliogr. 61 poz.
Twórcy
autor
  • Institute of Geophysics, Polish Academy of Sciences, Warsaw, Poland
  • Faculty of Physics, Institute of Geophysics, University of Warsaw, Warsaw, Poland
autor
  • Institute of Geophysics, Polish Academy of Sciences, Warsaw, Poland
  • Central Mining Institute, Katowice, Poland
autor
  • Faculty of Physics, Institute of Geophysics, University of Warsaw, Warsaw, Poland
Bibliografia
  • 1. BABEL Working Group (1993) Deep seismic reflection/refraction interpretation of crustal structure along BABEL profiles A and B in the southern Baltic Sea. Geophys J Int 112:325–343
  • 2. Babuška V, Montagner JP, Plomerová J, Girardin N (1998) Age-dependent large-scale fabric of the mantle lithosphere as derived from surface-wave velocity anisotropy. Pure Appl Geophys 151(2):257–280
  • 3. Blundell D, Freeman R, Mueller S (eds) (1992) A continent revealed: the European Geotraverse. Cambridge, Cambridge University Press, p 275
  • 4. Bogdanova SV, Gorbatschev R, Stephenson RA (2001) EUROBRIDGE: Paleoproterozoic accretion of Fennoscandia and Sarmatia. Tectonophysics 339:7–10
  • 5. Bogdanova SV, Gorbatschev R, Garetsky RG (2005) The East European Craton. In: Selley RC, Cocks LRM, Plimer IR (eds) Encyclopedia of geology, vol 2. Elsevier, Amsterdam, pp 34–49
  • 6. Bogdanova S, Gorbatschev R, Grad M, Guterch A, Janik T, Kozlovskaya E, Motuza G, Skridlaite G, Starostenko V, Taran L, EUROBRIDGE, POLONAISE Working Groups (2006) EUROBRIDGE: new insight into the geodynamic evolution of the East European Craton. In: Gee DG, Stephenson RA (eds) European lithosphere dynamics, vol 32. Geological Society of London Memoirs, London, pp 599–625
  • 7. Bukowska M (2012) The rockbursts in the Upper Silesian Coal Basin in Poland. J Min Sci 3:445–456
  • 8. Buła Z, Żaba J, Habryn R (2008) Tectonic subdivision of Poland: southern Poland (Upper Silesian Block and Małopolska Block). Prz Geol 56:912–920 (in Polish, English summary)
  • 9. Červený V, Pšenčík I (1984) SEIS83-Numerical modelling of seismic wave fields in 2-D laterally varying layered structures by the ray method. In: Documentation of earthquake algorithms by ER Engdahl. World Data Center (A) for Solid Earth Physics, Report SE–35, pp 36–40
  • 10. Cymerman Z (2007) Does the Mazury dextral shear zone exist? Prz Geol 55:157–167 (in Polish with English abstract)
  • 11. EUGENO-S Working Group (1988) Crustal structure and tectonic evolution of the transition between the Baltic Shield and the North German Caledonides (the EUGENO-S Project). Tectonophysics 150:253–348
  • 12. Franke W (2014) Topography of the Variscan orogen in Europe: failed-not collapsed. Int J Earth Sci 103:1471–1499
  • 13. Gee DG, Zeyen HJ (eds) (1996) EUROPROBE 1996-Lithospheric dynamics: origin and evolution of continents. the EUROPROBE Secretariate, Uppsala University, Uppsala, p 138
  • 14. Gorman AR (2002) Ray-theoretical seismic traveltime inversion: modifications for a two-dimensional radially parametrized Earth. Geophys J Int 151:511–516
  • 15. Grad M, Janik T, Yliniemi J, Guterch A, Luosto U, Komminaho K, Środa P, Höing K, Makris J, Lund CE (1999) Crustal structure of the Mid Polish Trough beneath TTZ seismic profile. Tectonophysics 314(1–3):145–160
  • 16. Grad M, Keller GR, Thybo H, Guterch A, POLONAISE Working Group (2002) Lower lithospheric structure beneath the Trans-European Suture Zone from POLONAISE’97 seismic profiles. Tectonophysics 360:153–168
  • 17. Grad M, Jensen SL, Keller GR, Guterch A, Thybo H, Janik T, Tiira T, Yliniemi J, Luosto U, Motuza G, Nasedkin V, Czuba W, Gaczyński E, Środa P, Miller KC, Wilde-Piórko M, Komminaho K, Jacyna J, Korabliova L (2003) Crustal structure of the Trans-European suture zone region along POLONAISE’97 seismic profile P4. J Geophys Res 108(B11):2541. https://doi.org/10.1029/2003JB002426
  • 18. Grad M, Guterch A, Polkowska-Purys A (2005) Crustal structure of the Trans-European Suture Zone in Central Poland: reinterpretation of the LT-2, LT-4 and LT-5 deep seismic sounding profiles. Geol Q 49(3):243–252
  • 19. Grad M, Guterch A, Keller GR, Janik T, Hegedüs E, Vozar J, Ślączka A, Tiira T, Yliniemi J (2006) Lithospheric structure beneath trans-Carpathian transect from Precambrian platform to Pannonian basin: CELEBRATION 2000 seismic profile CEL05. J Geophys Res 111:B03301
  • 20. Grad M, Guterch A, Mazur S, Keller GR, Špičák A, Hrubcová P, Geissler WH, SUDETES 2003 Working Group (2008) Lithospheric structure of the Bohemian Massif and adjacent Variscan belt in central Europe based on Profile S01 from the SUDETES 2003 experiment. J Geophys Res 113:B10304. https://doi.org/10.1029/2007JB005497
  • 21. Grad M, Brückl E, Majdański M, Behm M, Guterch A, CELEBRATION 2000, ALP 2002 Working Groups (2009a) Crustal structure of the Eastern Alps and their foreland: seismic model beneath the CEL10/Alp04 profile and tectonic implications. Geophys J Int 177:279–295
  • 22. Grad M, Tiira T, ESC Working Group (2009b) The Moho depth map of the European Plate. Geophys J Int 176:279–292. https://doi.org/10.1111/j.1365-246X.2008.03919.x
  • 23. Grad M, Polkowski M, Wilde-Piorko M, Suchcicki J, Arant T (2015) Passive seismic experiment “13 BB Star” in the margin of the East European craton, northern Poland. Acta Geophys 63(2):352–373
  • 24. Grad M, Polkowski M, Ostaficzuk SR (2016) High-resolution 3D seismic model of the crustal and uppermost mantle structure in Poland. Tectonophysics 666:188–210
  • 25. Guterch A, Grad M, Materzok R, Perchuć E (1986) Deep structure of the Earth’s crust in the contact zone of the Palaeozoic and Precambrian platforms in Poland (Tornquist-Teisseyre Zone). Tectonophysics 128:251–279
  • 26. Guterch A, Grad M, Janik T, Materzok R, Luosto U, Yliniemi J, Lück E, Schulze A, Förste K (1994) Crustal structure of the transition zone between Precambrian and Variscan Europe from new seismic data along LT-7 profile (NW Poland and eastern Germany). C R Acad Sci Paris 319(serie II):1489–1496
  • 27. Guterch A, Grad M, Thybo H, Keller GR (1997) POLONAISE’97-International seismic experiment. Terra Nostra 11:56–66
  • 28. Guterch A, Grad M, Thybo H, Keller GR, POLONAISE Working Group (1999) POLONAISE’97-International seismic experiment between Precambrian and Variscan Europe in Poland. Tectonophysics 314:101–121
  • 29. Guterch A, Grad M, Keller GR, Posgay K, Vozar J, Spicak A, Brueckl E, Hajnal Z, Thybo H, Selvi O, CELEBRATlON 2000 Experiment Team (2003) CELEBRATlON 2000 seismic experiment. Studia Geophys Geod 47:659–669
  • 30. Guterch A, Wybraniec S, Grad M, Chadwick RA, Krawczyk CM, Ziegler PA, Thybo H, Voss WD (2010) Crustal structure and structural framework. In: Doornenbal JC, Stevenson AG (eds) Petroleum geological atlas of the Southern Permian Basin area. EAGE Publications, Houten, pp 11–23
  • 31. Hrubcova P, Środa P, CELEBRATION 2000 Working Group (2008) Crustal structure at the easternmost termination of the Variscan belt based on CELEBRATION 2000 and ALP 2002 data. Tectonophysics 460:55–75
  • 32. Janik T, Yliniemi J, Grad M, Thybo H, Tiira T, POLONAISE P2 Working Group (2002) Crustal structure across the TESZ along POLONAISE’97 seismic profile P2 in NW Poland. Tectonophysics 360:129–152
  • 33. Janik T, Grad M, Guterch A, Dadlez R, Yliniemi J, Tiira T, Keller GR, Gaczyński E, CELEBRATION 2000 Working Group (2005) Lithospheric structure of the Trans-European Suture Zone along the TTZ and CEL03 seismic profiles (from NW to SE Poland). Tectonophysics 411:129–156. https://doi.org/10.1016/j.tecto.2005.09.005
  • 34. Janik T, Grad M, Guterch A, CELEBRATION 2000 Working Group (2009) Seismic structure of the lithosphere between the East European Craton and the Carpathians from the net of CELEBRATION 2000 profiles in SE Poland. Geol Q 53(1):141–158
  • 35. Janutyte I, Majdanski M, Voss PH, Kozlovskaya E, PASSEQ Working Group (2015) Upper mantle structure around the Trans-European Suture Zone obtained by teleseismic tomography. Solid Earth 6:73–91. https://doi.org/10.5194/se-6-73-2015
  • 36. Jensen SL, Janik T, Thybo H, POLONAISE Working Group (1999) Seismic structure of the Palaeozoic Platform along POLONAISE’97 profile P1 in NW Poland. Tectonophysics 314(1–3):123–144
  • 37. Knopoff L, Randall MJ (1970) The compensated linear-vector dipole: a possible mechanism for deep earthquakes. J Geophys Res 75:1957–1963
  • 38. Komminaho K (1998) Software manual for programs MODEL and XRAYS: a graphical interface for SEIS83 program package. University of Oulu, Department of Geophysics, Report 20, p 31
  • 39. Kwiatek G, Martínez-Garzón P, Bohnhoff M (2016) HybridMT: A MATLAB/shell environment package for seismic moment tensor inversion and refinement. Seismol Res Lett. https://doi.org/10.1785/0220150251
  • 40. Lund B (2015) The blast 2015-11-18 (personal communication)
  • 41. Lund CE, Prodehl C, Kaminski W, Guggisberg B, Ansorge J (1983) A preliminary interpretation of the long-range seismic refraction profile (Fennolora) through Scandinavia. Geol Fören Stockh Förh 105(4):388–388
  • 42. Majdański M (2012) The structure of the crust in TESZ area by Kriging interpolation. Acta Geophys 60(1):59–75. https://doi.org/10.2478/s11600-011-0058-5
  • 43. Malinowski M, Żelaźniewicz A, Grad M, Guterch A, Janik T, CELEBRATION 2000 Working Group (2005) Seismic and geological structure of the crust in the transition from Baltica to Palaeozoic Europe in SE Poland-CELEBRATION 2000 experiment, profile CEL02. Tectonophysics 401:55–77
  • 44. Mazur S, Mikolajczak M, Krzywiec P, Malinowski M, Buffenmyer V, Lewandowski M (2015) Is the Teisseyre-Tornquist Zone an ancient plate boundary of Baltica? Tectonics 34:2465–2477. https://doi.org/10.1002/2015TC003934
  • 45. Narkiewicz M, Grad M, Guterch A, Janik T (2011) Crustal seismic velocity structure of southern Poland: preserved memory of a pre-Devonian terrane accretion at the East European Platform margin. Geol Mag 148:191–210. https://doi.org/10.1017/S001675681000049X
  • 46. Pożaryski W, Dembowski Z (1983) Mapa geologiczna Polski i krajów ościennych bez utworów kenozoicznych, mezozoicznych i permskich, 1:1 000 000. Polish Geological Institute, Warsaw (in Polish)
  • 47. Puziewicz J (2006) Lower crust and uppermost mantle rocks in the area of the Polonaise’97 seismic experiment-petrologic-seismic models. Prace Państw Inst Geol 188:53–68 (in Polish with English summary)
  • 48. Puziewicz J, Polkowski M, Grad M (2017) Geophysical and petrological modeling of the lower crust and uppermost mantle in the Variscan and Proterozoic surroundings of the Trans-European Suture Zone in Central Europe. Lithos 276:3–14
  • 49. Sethian JA (1996) A fast marching level set method for monotonically advancing fronts. Proc Natl Acad Sci USA 93(4):1591–1595
  • 50. Sethian JA, Popovici AM (1999) 3-D traveltime computation using the fast marching method. Geophysics 64(2):516–523
  • 51. Skridlaitė G, Bogdanova S, Page L (2006) Mesoproterozoic events in eastern and central Lithuania as recorded by 40 Ar/39 Ar ages. Baltica 19:91–98
  • 52. Środa P, POLONAISE Working Group (1999) P and S wave velocity model of the southwestern margin of the Precambrian East European Craton, POLONAISE’97, profile P3. Tectonophysics 314(1–3):175–192
  • 53. Środa P, Czuba W, Grad M, Guterch A, Tokarski A, Janik T, Rauch M, Keller GR, Hegedűs E, Vozár J, CELEBRATION 2000 Working Group (2006) Crustal structure of the Western Carpathians from CELEBRATION 2000 profiles CEL01 and CEL04: seismic models and geological implication. Geophys J Int 167:737–760. https://doi.org/10.1111/j.1365-246X.2006.03104.x
  • 54. Wessel P, Smith WHF (1995) New version of generic mapping tools released. EOS 76:453
  • 55. Wiejacz P (1991) Investigation of focal mechanisms of mine tremors by the moment tensor inversion, Ph. D. Thesis. Institute of Geophysics, Polish Academy of Sciences Warsaw (in Polish)
  • 56. Wilde-Piórko M, Geissler WH, Plomerova J, Grad M, Babuska V, Bruckl E, Cyziene J, Czuba W, England R, Gaczyński E, Gazdova R, Gregersen S, Guterch A, Hanka W, Hegedus E, Heuer B, Jedlicka P, Lazuskiene J, Keller GR, Kind R, Klinge K, Kolinsky P, Komminaho K, Kozlovskaya E, Kruger F, Larsen T, Majdański M, Malek J, Motuza G, Novotny O, Pietrasiak R, Plenefisch Th, Ruzrk B, Sliaupa S, Środa P, Świeczak M, Tiira T, Voss P, Wiejacz P (2008) PASSEQ 2006-2008: Passive seismic experiment in Trans-European Suture Zone. Studia Geophys Geod 52:439–448. https://doi.org/10.1007/s11200-008-0030-2
  • 57. Wilde-Piórko M, Świeczak M, Grad M, Majdański M (2010) Integrated seismic model of the crust and upper mantle of the Trans-European Suture zone between the Precambrian craton and Phanerozoic terranes in Central Europe. Tectonophysics 481:108–115. https://doi.org/10.1016/j.tecto.2009.05.002
  • 58. Winchester JA, The PACE TMR Network Team (2002) Palaeozoic amalgamation of Central Europe: new results from recent geological and geophysical investigations. Tectonophysics 360:5–21
  • 59. Zelt CA (1994) Software package ZPLOT. Bullard Laboratories, University of Cambridge, Cambridge
  • 60. Zelt CA (1999) Modelling strategies and model assessment for wide-angle seismic travel-time data. Geophys J Int 139:183–204
  • 61. Ziegler PA (1990) Geological atlas of western and central Europe, 2nd ed. Shell International Petroleum Maatschappij, Hague, Geological Society Publishing House, London
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e33bccba-988f-49b4-8cd6-751302b5848c
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.