Otwarty dostęp

Analysis and Routing of Basic Parameters of Tasuj Earthquake (April 2013, Northwest of Iran) with an Emphasis on Geodetic Data, Foreshocks and Large Aftershocks


Zacytuj

Bolt, B. A. (1990). Earthquakes, W. H. Freeman, and Company, New York, NY. Search in Google Scholar

Cenni N., Viti M., Mantovani E., Bacchetti M. and Vannucchi A.(2015). Space geodetic data (GPS) and earthquake forecasting: examples from the Italian geodetic network. Bollettino di Geofisica Teorica ed Applicata Vol. 56, n. 2, pp. 129-150 Search in Google Scholar

Das, S., & Henry, C. (2003). Spatial relation between main earthquake slip and its aftershock distribution. Reviews of Geophysics, 41(3), 10–13.10.1029/2002RG000119 Search in Google Scholar

Djamour Y, Vernant P, Nankali H, Tavakoli F. (2011). NW Iran-eastern Turkey present-day kinematics: results from the Iranian permanent GPS network. Earth Planet. Sci. Lett. 307:27–34. Available from: http://dx.doi.org/10.1016/j.epsl.2011.04.02910.1016/j.epsl.2011.04.029 Search in Google Scholar

Gu, G and Meng G. (2011). Crustal movement in the earthquake area before and after 2008 Wenchuan earthquake as detected by precise single epoch positioning of GPS observations. Acta Seismoligica Sinika. Vol. 33, No. 3: 319-326. Search in Google Scholar

Hessami, Kh, Jamali, F., & Tabassi, H. (2003). Map of Major Active Faults of Iran. International Institute of Earthquake Engineering and Seismology Press, 1 sheet. Search in Google Scholar

Iwata, T. (2008). Detection capability of global earthquakes after the occurrence of large earthquakes: Investigation of the Harvard CMT catalogue. Geophysical Journal International, 174(3), 849–856.10.1111/j.1365-246X.2008.03864.x Search in Google Scholar

Karimzadeh S, Cakir Z, Osmanoglu B, Schmalzle G, Miyajima M, Amiraslanzadeh R, Djamour Y. (2013). Interseismicstrain accumulation across the North Tabriz Fault (NW Iran) deduced from InSAR time series. J. Geodynamics.66:53–58. Search in Google Scholar

Mendoza, C., & Hartzell, S. H. (1988). Aftershock patterns and main shock faulting. Bulletin of the Seismological Society of America, 78(4), 1438–1449. Search in Google Scholar

Nishimura, T., Munekane, H., &Yarai, H. (2011).The 2011 off the Pacific coast of Tohoku Earthquake and its aftershocks observed by GEONET. Earth, planets and space, 63(7), 631–636.10.5047/eps.2011.06.025 Search in Google Scholar

NDRI. (2015). Report of large earthquake (Mw>5.0) in Iran. Department of applied studies and researches of natural disaster. Natural Disaster Institute of Iran. Search in Google Scholar

Omi, T., Ogata, Y., Hirata, Y., & Aihara, K. (2013). Forecasting large aftershocks within one day after the main shock. Scientific Report 3, 18 pp.10.1038/srep02218 Search in Google Scholar

Omori, F. (1894). On the after-shocks of earthquakes, J. College Sci., Imp. Univ. Tokyo, 7, 111–200. Search in Google Scholar

PourKermani M., &Arian, M. (1999). Seismicity of Iran. Shahid Beheshti, University Press, 212 pp. Search in Google Scholar

Richter, C. F. (1955). Foreshocks and aftershocks, in earthquakes in Kern County, California during 1952.California division of Mines, Bulletin 171, San Francisco, 177–197. Search in Google Scholar

Reasenberg, P. A. & Jones, L. M. (1994). Earthquake Aftershocks: Update. Science 265, 1251–1252.10.1126/science.265.5176.1251 Search in Google Scholar

Saket, A., & FatemiAghda, S. M. (2009). Investigation of destructive and non-destructive aftershocks in important earthquakes. Engineering geology for tomorrow’s cities, Geological Society, London, Engineering Geology Special Publication, (on CD-ROM insert, Paper 763). Search in Google Scholar

Saket, A., FatemiAghda, S. M., & Khadivi, Sh. (2005). A Comparison between Seismicity Parameters of Bam and Zarand Earthquakes with an Emphasis on their Aftershocks. 9th conference of Iranian Geological Association, Kharazmi University, Tehran, Iran, 161–169. Search in Google Scholar

Saket, A. (2007). Seismicity Study of Silakhor Plain before and after Doroud Earthquake (ML=6, March 2006). 5th conference of Engineering Geology and Environmental Geology of Iran. Kharazmi University, Tehran, Iran, 7 pp. Search in Google Scholar

Shaik, M.A., & Srivastava, S. (2003). Statistical parameters of Bhuj earthquake sequence of January 26th, 2001. Journal of Earth System Science, 112(3), 397–400.10.1007/BF02709266 Search in Google Scholar

Tajima, F., &Kanamori, H. (1985). Global survey of aftershock area expansion patterns. Physics of the Earth and planetary interiors, 40(2), 77–134.10.1016/0031-9201(85)90066-4 Search in Google Scholar

Tartar, M., &Farahbod, A. M. (2007). Study of 29 May 2004 Firouz Abad-Kojour Earthquake and its Aftershocks based on Analysis of Data Recorded in Local Seismometry Stations. Geosciences Scientific Quarterly Journal, 16(64), 24–37. Search in Google Scholar

Tronin A.A. (2010). Satellite remote sensing in seismology. A review. Remote Sens., 2, 124-150, doi: 10.3390/rs2010124.10.3390/rs2010124 Search in Google Scholar

Zhao, B., Shi, Y., & Gao, Y. (2011). Relation of aftershocks of the WenchuanMs 8.0 earthquake its implication to seismotectonics.Earth Science, (24), 107–113. Search in Google Scholar

eISSN:
2284-7197
Język:
Angielski
Częstotliwość wydawania:
2 razy w roku
Dziedziny czasopisma:
Engineering, Introductions and Overviews, other, Electrical Engineering, Energy Engineering, Geosciences, Geodesy