Συσταδοποπίηση και περιοδικότητα των μεγάλων σεισμών στο ελληνικό χώρο = Clustering and perodocoty of the big earthquakes on Greece.
Περίληψη
Η παρούσα διπλωματική εργασία επικεντρώνεται στην σεισμικότητα στις περιοχές Κεντρικών Ιονίων Νήσων, Κορινθιακού κόλπου, Βόρειου και Νότιου Αιγαίου πελάγους για σεισμούς που έγιναν από το 1600 μέχρι σήμερα και μεγέθους Μ?6.0. Σκοπός είναι η χρονική μελέτη καθώς και η πιθανότητα σύνδεσης των σεισμών σε κάθε μια από τις περιοχές ξεχωριστά.
Στο πρώτο κεφάλαιο, περιγράφονται οι σεισμοτεκτονικές ιδιότητες των περιοχών μελέτης και γίνεται μια σύντομη αναφορά σε παλαιότερες μελέτες αντίστοιχες με το αντικείμενο μελέτης της παρούσας εργασίας. Στο δεύτερο κεφάλαιο, γίνεται παρουσίαση και (χωρική και χρονική) ανάλυση των δεδομένων για κάθε μια από τις περιοχές ξεχωριστά. Στο τρίτο κεφάλαιο, γίνεται στατιστική ανάλυση των δεδομένων που παρουσιάστηκαν στο δεύτερο κεφάλαιο περιγραφή των παραμέτρων που χρησιμοποιούνται για τους σκοπούς της εργασίας και εξαγωγή αποτελεσμάτων. Τέλος, στο τέταρτο κεφάλαιο αναλύονται τα συμπεράσματα που προκύπτουν και η ερμηνεία που δίνεται από τα αποτελέσματα που βγήκαν από το τρίτο κεφάλαιο.
This diploma thesis concentrates on the seismicity in the Central Ionian Islands, Gulf of Corinth, North and South Aegean seas for earthquakes that occurred from 1600 to the present and of magnitude M?6.0. The purpose is the temporal study as well as the possibility of connecting the earthquakes in each of regions separately.
In the first chapter, the seismotectonic properties of the study areas are described and a brief reference is made to earlier studies corresponding to the subject of the present thesis. In the second chapter, there is a presentation and (spatial and temporal) analysis of the data for each of regions separately. In the third chapter, a statistical analysis of the data presented in the second chapter is made, along with a description of the parameters used for the purpose of this study and the extraction of the results. Finally, the fourth chapter discusses the conclusions and the interpretation given by the results obtained from the third chapter.
Πλήρες Κείμενο:
PDFΑναφορές
Ben-Naim, E., Daub, E. G. and Johnson, P. A. (2013), Recurrence statistics of great earthquakes, Geophysical Research Letters, 40, 3021–3025. https://doi.org/10.1002/grl.50605
Bonatis, P., Akinci, A., Karakostas, V., Papadimitriou, E. and Kaviris, G. (2021). Near-Fault Broadband Ground Motion Simulation Applications at the Central Ionian Islands, Greece. Pure and Applied Geophysics, 178, 3505–3527. https://doi.org/10.1007/s00024-021-02825-9
Chen, Y., Liu, M., and Luo, G. (2020). Complex temporal patterns of large earthquakes: Devil's staircases. Bulletin of Seismological Society of America, 110 (3), 1064–1076. https://doi.org/10.1785/0120190148
Console, R., Carluccio, R., Papadimitriou, E., and Karakostas, V. (2015). Synthetic earthquake catalogs simulating seismic activity in the Corinth Gulf, Greece, fault system, Journal of Geophysical Research, 120, 326–343. https://doi.org/10.1002/2014JB011765
Gardner, J. K., and Knopoff, L. (1974), Is the sequence of earthquakes in Southern California, with aftershocks removed, Poissonian?, Bulletin of Seismological Society of America, 64 (5), 1363–1367. https://doi.org/10.1785/BSSA0640051363
Goh, K.‐I., & Barabási, A.‐L. (2008). Burstiness and memory in complex systems. Europhysics Letters, 81(4), 48,002. https://doi.org/ 10.1209/0295‐5075/81/48002
Goldsworthy, M., Jackson, J., & Haines, J., 2002. The continuity of active faults systems in Greece, Geophysical Journal International, 148, 596–618. https://doi.org/10.1046/j.1365-246x.2002.01609.x.
Grant, L. B., and Sieh, K. (1994). Paleoseismic evidence of clustered earthquakes on the San Andreas Fault in the Carrizo Plain, California. Journal of Geophysical Research, 99(B4), 6819. https://doi.org/10.1029/94JB00125
Griffin, J. D., Stirling, M. W., and Wang, T. (2020). Periodicity and clustering in the long‐term earthquake record. Geophysical Research Letters, 47, e2020GL089272. https://doi.org/ 10.1029/2020GL089272
Jackson, J. & McKenzie, D. (1984). Active tectonics of the Alpine-Himalayan Belt between western Turkey and Pakistan, Geophysical Journal of Royal Astronomical Society, 77, 185–264.
Karakostas, V., Papadimitriou, E., & Papazachos, C. (2004). Properties of the 2003 Lefkada, Ionian islands, Greece, Earthquake seismic sequence and seismicity triggering, Bulletin of the Seismological Society of America, 94(5), 1976–1981. https://doi.org/10.1785/012003254
Κουρούκλας, Χ. (2023). Καθορισμός και προσομοίωση χρόνων επανάληψης ισχυρών σεισμών στον Ελληνικό χώρο με τη χρήση στοχαστικών μοντέλων: συμβολή στην εκτίμηση της σεισμικής επικινδυνότητας, σελ. 392, Διδακτ. Διατριβή, Τμήμα Γεωλογίας, Α.Π.Θ. http://dx.doi.org/10.12681/eadd/53270
LePichon, X., and Angelier, J. (1979). The hellenic arc and trench system: A key to the neotectonic evolution of the eastern mediterranean area, Tectonophysics, 60, 1-42. https://doi.org/10.1016/0040-1951(79)90131-8.
Louvari, E., Kiratzi, A. A., & Papazachos, B. C., 1999. The Cephalonia transform Fault and its extension to western Lefkada Island (Greece), Tectonophysics, 308, 223–236. https://doi.org/10.1016/S0040-1951(99)00078-5
Reid, H. F. (1910). The mechanism of the earthquake. In The California earthquake of April 18, 1906, Report of the State Earthquake Investigation Commission (Vol. 2). Washington, D.C.: Carnegie Institution.
Papadimitriou, E., Karakostas, V., Mesimeri, M., Chouliaras, G., and Kourouklas, Ch. (2017). The Mw6.5 17 November 2015 Lefkada (Greece) earthquake: structural interpretation by means of the aftershock analysis, Pure and Applied Geophysics, 174, 3869–3888. https://doi.org/10.1007/s00024-017-1601-3
Papazachos, B. C., and Comninakis, P. E. (1971). Geophysical and tectonic features of the Aegean arc, Journal of Geophysical Research, 76, 8517–8533. https://doi.org/10.1029/jb076i035p08517
Papazachos, B.C., Papadimitriou, E.E., Kiratzi, A.A., Papazachos, C.B. and Louvari, E.K. (1998). Fault plane solutions in the Aegean Sea and the surrounding area and their tectonic implications, Bolletino di Geofisica Teorica ed Applicata, 39, 199–218.
Papazachos, B. C., Comninakis, P. E., Scordilis, E. M., Karakaisis, G. F., and Papazachos, C. B. (2010). A catalogue of earthquakes in the Mediterranean and surrounding area for the period 1901–2010, Publ. Geophys. Laboratory, University of Thessaloniki, Greece.
Papazachos, B. C., and Papazachou, C. B. (2003). The earthquakes of Greece (p. 273). Ziti publications.
Rhoades, D.A., Papadimitriou, E.E., Karakostas, V.G., Console, R., and Murru, M. (2010). Correlation of Static Stress Changes and Earthquake Occurrence in the North Aegean
Region. In: Savage, M.K., Rhoades, D.A., Smith, E.G.C., Gerstenberger, M.C., Vere-Jones, D. (eds) Seismogenesis and Earthquake Forecasting: The Frank Evison Volume II. Pageoph Topical Volumes. Springer, Base
Salditch, L., Stein, S., Neely, J., Spencer, B. D., Brooks, E. M., Agnon, A., and Liu, M. (2020). Earthquake supercycles and long‐term fault memory. Tectonophysics, 774, 228289. https://doi.org/10.1016/j.tecto.2019.228289
Scholz, C. H., (2019). The mechanics of earthquake and faulting. 3rd edn. Cambridge University Press, 504.
Scordilis, E., Karakaisis, G. F., Karakostas, V., Panagiotopoulos, D. G., Comninakis, P. E., and Papazachos, B. C. (1985). Evidence for Transform Faulting in the Ionian Sea: The Cephalonia Island Earthquake Sequence of 1983, Pure and Applied Geophysics, 123, 388-397.
Sieh, K., Natawidjaja, D. H., Meltzner, A. J., Shen, C. C., Cheng, H., Li, K. S., et al. (2008). Earthquake supercycles inferred from sea‐level changes recorded in the corals of west
Sumatra. Science, 322(5908), 1674–1678. http://doi.org/10.1126/science.1163589
Sykes, L. R., and Menke, W. (2006). Repeat times of large earthquakes: Implications for earthquake mechanics and long‐term prediction. Bulletin of the Seismological Society of America, 96(5), 1569–1596. http://doi.org/10.1785/0120050083
Wessel, P., Smith, W.H.F., Scharroo, R., Luis, J., and Wobbe, F. (2013). Generic mapping tools: Improved version released, EOS, Transactions, American Geophysical Union, 2013, 94, 409–410.
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