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Dive into the research topics where Mimoun Harnafi is active.

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Featured researches published by Mimoun Harnafi.


Bulletin of the Seismological Society of America | 2010

Background noise characteristics at the IberArray broadband seismic network

Jordi Diaz; Antonio Villaseñor; J. Morales; Antonio Pazos; Diego Córdoba; J. A. Pulgar; J. L. García-Lobón; Mimoun Harnafi; Ramón Carbonell; J. Gallart

This is a contribution of the Team Consolider-Ingenio 2010 TOPO-IBERIA (CSD2006-00041). Additional funding is provided by the SIBERIA project (CGL2006-01171).


Geochemistry Geophysics Geosystems | 2014

Crustal structure beneath the Rif Cordillera, North Morocco, from the RIFSIS wide‐angle reflection seismic experiment

Alba Gil; J. Gallart; Jordi Diaz; Ramón Carbonell; Montserrat Torné; Alan R. Levander; Mimoun Harnafi

The different geodynamic models proposed since the late 1990s to account for the complex evolution of the Gibraltar Arc System lack definite constraints on the crustal structure of the Rif orogen. Here we present the first well-resolved P-wave velocity crustal models of the Rif Cordillera and its southern continuation toward the Atlas made using controlled-source seismic data. Two 300+ km-long wide-angle reflection profiles crossed the Rif along NS and EW trends. The profiles recorded simultaneously five land explosions of 1Tn each using ∼850 high frequency seismometers. The crustal structure revealed from 2-D forward modeling delineates a complex, laterally varying crustal structure below the Rif domains. The most surprising feature, seen on both profiles, is a ∼50 km deep crustal root localized beneath the External Rif. To the east, the crust thins rapidly by 20 km across the Nekkor fault, indicating that the fault is a crustal scale feature. On the NS profile the crust thins more gradually to 40 km thickness beneath Middle Atlas and 42 km beneath the Betics. These new seismic results are in overall agreement with regional trends of Bouguer gravity and are consistent with recent receiver function estimates of crustal thickness. The complex crustal structure of the Rif orogen in the Gibraltar Arc is a consequence of the Miocene collision between the Iberian and African plates. Both the abrupt change in crustal thickness at the Nekkor fault and the unexpectedly deep Rif crustal root can be attributed to interaction of the subducting Alboran slab with the North African passive margin at late Oligocene-early Miocene times.


Exploration Geophysics | 2017

New comprehensive standard seismic noise models and 3D seismic noise variation for Morocco territory, North Africa, obtained using seismic broadband stations

Younes El Fellah; Abd El-Aziz Khairy Abd El-Aal; Mimoun Harnafi; Antonio Villaseñor

In the current work, we constructed new comprehensive standard seismic noise models and 3D temporal-spatial seismic noise level cubes for Morocco in north-west Africa to be used for seismological and engineering purposes. Indeed, the original global standard seismic noise models published by Peterson (1993) and their following updates by Astiz and Creager (1995), Ekström (2001) and Berger et al. (2003) had no contributing seismic stations deployed in North Africa. Consequently, this preliminary study was conducted to shed light on seismic noise levels specific to north-west Africa. For this purpose, 23 broadband seismic stations recently installed in different structural domains throughout Morocco are used to study the nature and characteristics of seismic noise and to create seismic noise models for Morocco. Continuous data recorded during 2009, 2010 and 2011 were processed and analysed to construct these new noise models and 3D noise levels from all stations. We compared the Peterson new high-noise model (NHNM) and low-noise model (NLNM) with the Moroccan high-noise model (MHNM) and low-noise model (MLNM). These new noise models are comparable to the United States Geological Survey (USGS) models in the short period band; however, in the period range 1.2 s to 1000 s for MLNM and 10 s to 1000 s for MHNM display significant variations. This variation is attributed to differences in the nature of seismic noise sources that dominate Morocco in these period bands. The results of this study have a new perception about permanent seismic noise models for this spectacular region and can be considered a significant contribution because it supplements the Peterson models and can also be used to site future permanent seismic stations in Morocco. New comprehensive seismic noise models and 3D seismic noise variation are constructed for Morocco, North Africa, using 23 broadband stations. The results bring a new perception to noise models and can be considered as a significant contribution. This study supplements the Peterson models and allows future permanent stations to be sited in Morocco.


Earth and Planetary Science Letters | 2013

Evidence for slab rollback in westernmost Mediterranean from improved upper mantle imaging

Maximiliano Bezada; Eugene D. Humphreys; Douglas R. Toomey; Mimoun Harnafi; J.M. Dávila; J. Gallart


Geophysical Research Letters | 2010

Mantle dynamics beneath the Gibraltar Arc (western Mediterranean) from shear-wave splitting measurements on a dense seismic array

Jordi Diaz; J. Gallart; Antonio Villaseñor; Flor de Lis Mancilla; Antonio Pazos; Diego Córdoba; J. A. Pulgar; Pedro Ibarra; Mimoun Harnafi


Journal of Geophysical Research | 2012

Crustal thickness variations in northern Morocco

Flor de Lis Mancilla; Daniel Stich; J. Morales; J. Julia; Jordi Diaz; Antonio Pazos; Diego Córdoba; J. A. Pulgar; Pedro Ibarra; Mimoun Harnafi; F. González-Lodeiro


Tectonophysics | 2015

Subduction and volcanism in the Iberia-North Africa collision zone from tomographic images of the upper mantle

Antonio Villaseñor; Sébastien Chevrot; Mimoun Harnafi; J. Gallart; Antonio Pazos; Inmaculada Serrano; Diego Córdoba; J. A. Pulgar; Pedro Ibarra


Geophysical Journal International | 2014

Crustal and upper-mantle structure beneath the western Atlas Mountains in SW Morocco derived from receiver functions

Kathrin Spieker; Ingo Wölbern; Christine Thomas; Mimoun Harnafi; Lahcen El Moudnib


International Journal of Geosciences | 2013

Prediction of Porosity and Density of Calcarenite Rocks from P-Wave Velocity Measurements

Abdelaali Rahmouni; Abderrahim Boulanouar; Mohamed Boukalouch; Yves Géraud; Abderrahim Samaouali; Mimoun Harnafi; Jamal Sebbani


Tectonophysics | 2015

Crustal structure of the Betic–Rif system, western Mediterranean, from local earthquake tomography

Lahcen El Moudnib; Antonio Villaseñor; Mimoun Harnafi; J. Gallart; Antonio Pazos; Inmaculada Serrano; Diego Córdoba; J. A. Pulgar; Pedro Ibarra; Mohammed M. Himmi; Mimoun Chourak

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Antonio Villaseñor

Spanish National Research Council

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J. Gallart

Spanish National Research Council

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Diego Córdoba

Complutense University of Madrid

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Jordi Diaz

Spanish National Research Council

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Pedro Ibarra

Instituto Geológico y Minero de España

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