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Seismotectonics of western Greece using geophysical and seismological data

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
Czasopismo
Rocznik
Tom
Strony
319--330
Opis fizyczny
Bibliogr. 37 poz., rys.
Twórcy
  • Department of Geophysics, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece
autor
  • Department of Geophysics, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece
autor
  • Department of Geophysics, Aristotle University of Thessaloniki, P.O. Box 352-1, 54124 Thessaloniki, Greece
Bibliografia
  • 1. Anderson, H., Jackson, J., 1987. Active tectonics of the Adriatic region. Geophys. J. R. astr. Soc., 91, 937-983.
  • 2. Baker, C., Hatzfeld, D., Lyon-Caen, H., Papadimitriou, E., Rigo, A., 1997. Earthquake mechanisms of the Adriatic Sea and western Greece, Geophys. J. Int., 131, 559-594.
  • 3. Benetatos, Ch., Kiratzi A., Roumelioti Z., Stavrakakis G., Drakatos G., I. Latoussakis, 2005, The 14 August 2003 Lefkada Island (Greece) earthquake: focal mechanisms of the mainshock and of the aftershock sequence. Journal of Seismology, 9, 171-190.
  • 4. Blakely, R.J., 1981, A program for rapidly computing the magnetic anomaly over digital topography: U.S. Geological Survey Open-File Report 81-298, 46 p.
  • 5. Gettings, M.E., Houser, B.B., 2000. Depth to bedrock in the Upper San Pedro Valley, Cochise County, southeastern Arizona, Open-File Report 00-138, Online version 1.0 ( http://pubs.usgs.gov/of/2000/of00-138/).
  • 6. Hansen, R. O., Wang, X., 1988. Simplified frequency-domain expressions for potential fields of arbitrary three-dimensional bodies: Geophysics, 53, 365-74.
  • 7. Hildenbrand, T.G., 1983. FFTFIL: A Filtering Program Based On Two-Dimensional Fourier Analysis, U.S.G.S. Open -File Report P. 83-287.
  • 8. Jackson, J., 1994. Active tectonics of the Aegean region. Annu. Rev. Earth Planet. Sci., 22, 239-271.
  • 9. Kane, I., Assessment of geophysical structure of the crust in Albania using gravity and magnetic measurements, PhD thesis, Aristotle University of Thessaloniki, submitted 2003.
  • 10. Kiratzi, A., 2002. Stress tensor inversions along the westernmost North Anatolian Fault Zone and its continuation into the North Aegean Sea. Geophys. J. Int., 151, 360-376.
  • 11. Kiratzi, A., E. Louvari, 2003. Focal mechanisms of shallow earthquakes in the Aegean Sea and the surrounding lands determined by waveform modeling: a new database. “Journal of Geodynamics”, 36, 251 - 274.
  • 12. Lagios, E., S. Chailas, R.G. Hipkin, 1996. Newly compiled gravity and topographic databanks of Greece. Geophys. J. Int., 126, 287-190.
  • 13. Louvari, E., 2000. A detailed seismotectonic analysis of the Aegean and the surrounding area, PhD thesis, Aristotle University of Thessaloniki, pp 374.
  • 14. Louvari, E., Kiratzi, A., Papazachos, B. C., 1999. The Cephalonia Transform Fault and its continuation to western Lefkada Island. Tectonophysics , 308, 223-236.
  • 15. Louvari, E., Kiratzi, A., Papazachos, B., Hatzidimitriou, P., 2001. Fault plane solutions determined by waveform modelling confirm tectonic collision in eastern Adriatic. PAGEOPH, 158(9-10), 1613-1638.
  • 16. Makris, J., Stavrou, A., 1984. Compilation of gravity maps of Greece: Hamburg University, Institute of Geophysics, Hamburg, pp 12.
  • 17. McClusky, S., Balassanian, S., Barka, A., Demir, C., Georgiev, I., Hamburg, M., Hurst, K., Kahle, H., Kastens, K., Kekelidze, G., King, R., Kotzev, V., Lenk, O., Mahmoud, S., Mishin, A., Nadariya, M., Ouzounis, A., Paradissis, D., Peter, Y., Prilepin, M., Reilinger, R., Sanli, I., Seeger, H., Tealeb, A., Toksoz, M.N., Veis, G., 2000. Global Positioning System constraints on plate kinematics and dynamics in the eastern Mediterranean and Caucasus. J. Geophys. Res., 105, 5695-5720.
  • 18. Nabighian, M.N., 1972. The Analytic Signal of Two-Dimensional Bodies With Polygonal Cross-Section: Its Properties And Use For Automated Anomaly Interpretation. Geophysics, 37, 507-517.
  • 19. Nabighian, M.N., 1984. Toward A Three-Dimensional Automatic Interpretation of Potential-Field Data via Generalized Hilbert Transforms: Fundamental Relations: Geophysics, 49, 780-786.
  • 20. Papazachos, C. B., Hatzidimitriou, P. M., Panagiotopoulos, D. G., Tsokas, G. N., 1995. Tomography of the crust and upper mantle in southeast Europe. J. Geophys. Res., 100, 12405-12422.
  • 21. Papazachos, C.B., Nolet, G., 1997. P and S deep velocity structure of the Hellenic area obtained by robust nonlinear inversion of travel times. J. Geophys. Res., 102, 8349-8367.
  • 22. Papazachos C. B., Scordilis E., Peci, V., 2005. Crustal and Upper Mantle P- and S Velocity Structure of the Southern Adriatic-Eurasia Collision Obtained By Non-Linear Inversion of Regional Travel Times, Geophys. J. Int., (in press).
  • 23. Papazachos, B.C., Comninakis, P.E., 1970. Geophysical features of the Greek Island Arc and Eastern Mediterranean Ridge. Com. Ren. Des Séances de la Conférence Réunie a Madrid, 1969, 16, 74-75.
  • 24. Papazachos, B.C., Comninakis, P.E., 1971. Geophysical and tectonic features of the Aegean arc. J. Geophys. Res., 76, 8517-8533.
  • 25. Papazachos, B.C., Papazachou, C., 2003. The earthquakes of Greece. Ziti Publications, Thessaloniki, Greece.
  • 26. Papazachos, B.C., Papadimitriou, E.E., Kiratzi, A.A., Papazachos, C.B., Louvari, E.K., 1998. Fault plane solutions in the Aegean Sea and the surrounding area and their tectonic implication. Boll. Geof. Teor. App., 39, 199-218.
  • 27. Papazachos, B.C., Mountrakis, D., Papazachos, C., Tranos, M., Karakaisis, G., A. Savvaidis, 2001. The faults that produced the known strong earthquakes in Greece from 5th century up to present. Proc. of the 2nd Conf. of Earthquake Engineering and Engineering Seismology, Thessaloniki 28-30 Nov. 2001, vol. 2, 17-26.
  • 28. Parker, R. L., 1973. The Rapid Calculation of Potential Anomalies. Geophysical Journal of the Royal Astronomical Society, 31, 447-455.
  • 29. Phillips, J.D., 1997. Potential-Field Geophysical Software for The Pc, Version 2.2. U.S. Geological Survey Open-File Report 97-725.
  • 30. Phillips, J.D., 2001, Processing and interpretation of aeromagnetic data for the Santa Cruz basin – Patagonia Mountains area, south-central Arizona - a preliminary report: U.S. Geological Survey Open-File Report 15 p.
  • 31. Roest, W. R., Verhoef, J., Pilkington, M., 1992. Magnetic interpretation using the 3-D analytic signal. Geophysics 57(1), 116-125.
  • 32. Scordilis, E. M., Karakaisis, G. F., Karacostas, B. G., Panagiotopoulos, D. G., Comninakis, P. E., Papazachos, B. C., 1985. Evidence for transform faulting in the Ionian Sea: The Cephalonia Island earthquake Sequence of 1983. PAGEOPH, 123, 388-397.
  • 33. Spakman, W., 1986. Subduction beneath Eurasia in connection with the Mesozoic Tethys. Geol. Mijnb., 65, 145-153.
  • 34. Thurston, J.B., Smith, R.S., 1997. Automatic Conversion of Magnetic Data to Depth, Dip, and Susceptibility Contrast Using Spi ™ Method: Geophysics, 62 (3), 8-7-813.
  • 35. Tsokas, G.N., Hansen, R., 1997. Study of the crustal thickness and subducting lithosphere in Greece from gravity data. Journal of Geophysical Research 102, 20585– 20597.
  • 36. Tsokas, G.N., 2000. The Milos Island Bouguer anomaly revisited by means of a complex attribute analysis and inferred source parameter estimates. Journal of the Balkan Geophysical Society, Vol. 3, No. 4, p. 77-86.
  • 37. Van Hinsbergen, D.J.J., van der Meer, D.G., Zachariasse, W.J., Meulenkamp, J.E., 2005. Deformation of western Greece during Neogene clockwise rotation and collision with Apulia, International Journal of Earth Sciences, DOI 10.1007/s00531-005-0047-5.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-034a1976-de9b-4de1-ac5d-6abd1a5e0167
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