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  5. The 2014 Earthquake Model of the Middle East: seismogenic sources
 
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The 2014 Earthquake Model of the Middle East: seismogenic sources

Author(s)
Danciu, Laurentiu  
Şeşetyan, Karin  
Demircioglu, Mine  
Gülen, Levent  
Zare, Mehdi  
Basili, Roberto  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma1, Roma, Italia  
Elias, Ata  
Adamia, Shota  
Tsereteli, Nino  
Yalçın, Hilal  
Utkucu, Murat  
Asif Khan, Muhammad  
Sayab, Mohammad  
Hessami, Khaled  
Rovida, Andrea  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Milano, Milano, Italia  
Stucchi, Massimiliano  
Burg, Jean-Pierre  
Karakhanian, Arkady  
Babayan, Hektor  
Avanesyan, Mher  
Mammadli, Tahir  
Al-Qaryouti, Mahmood  
Kalafat, Doğan  
Varazanashvili, Otar  
Erdik, Mustafa  
Giardini, Domenico  
Language
English
Obiettivo Specifico
6T. Studi di pericolosità sismica e da maremoto
Status
Published
JCR Journal
JCR Journal
Peer review journal
Yes
Journal
Bulletin of Earthquake Engineering  
Issue/vol(year)
8/16 (2018)
Pages (printed)
3465-3496
Date Issued
2018
DOI
10.1007/s10518-017-0096-8
URI
https://www.earth-prints.org/handle/2122/10690
Abstract
The Earthquake Model of Middle East (EMME) project was carried out between 2010 and 2014 to provide a harmonized seismic hazard assessment without country border limitations. The result covers eleven countries: Afghanistan, Armenia, Azerbaijan, Cyprus, Georgia, Iran, Jordan, Lebanon, Pakistan, Syria and Turkey, which span one of the seismically most active regions on Earth in response to complex interactions between four major tectonic plates i.e. Africa, Arabia, India and Eurasia. Destructive earthquakes with great loss of life and property are frequent within this region, as exemplified by the recent events of Izmit (Turkey, 1999), Bam (Iran, 2003), Kashmir (Pakistan, 2005), Van (Turkey, 2011), and Hindu Kush (Afghanistan, 2015). We summarize multidisciplinary data (seismicity, geology, and tectonics) compiled and used to characterize the spatial and temporal distribution of earthquakes over the investigated region. We describe the development process of the model including the delineation of seismogenic sources and the description of methods and parameters of earthquake recurrence models, all representing the current state of knowledge and practice in seismic hazard assessment. The resulting seismogenic source model includes seismic sources defined by geological evidence and active tectonic findings correlated with measured seismicity patterns. A total of 234 area sources fully cross-border-harmonized are combined with 778 seismically active faults along with background-smoothed seismicity. Recorded seismicity (both historical and instrumental) provides the input to estimate rates of earthquakes for area sources and background seismicity while geologic slip-rates are used to characterize fault-specific earthquake recurrences. Ultimately, alternative models of intrinsic uncertainties of data, procedures and models are considered when used for calculation of the seismic hazard. At variance to previous models of the EMME region, we provide a homogeneous seismic source model representing a consistent basis for the next generation of seismic hazard models within the region.
Type
article
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2017_Danciu_etal_BEE_EMME.pdf

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Checksum (MD5)

101c161f99210d8c51d639fc54677595

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