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  • Alboran Sea; Binary Object; Binary Object (File Size); Continental crust; crustal strcuture; Elevation of event; Event label; Latitude of event; Longitude of event; M69/2; M69/2_OBH01; M69/2_OBH02; M69/2_OBH03; M69/2_OBH04; M69/2_OBH05; M69/2_OBH06; M69/2_OBH07; M69/2_OBH08; M69/2_OBH09; M69/2_OBH17; M69/2_OBH18; M69/2_OBH19; M69/2_OBH20; M69/2_OBH21; M69/2_OBH22; M69/2_OBH23; M69/2_OBH24; M69/2_OBS12; M69/2_OBS13; M69/2_OBS14; M69/2_OBS15; M69/2_OBS16; M69/2_p01; M69/2_P01_L1; M69/2_P01_L10; M69/2_P01_L2; M69/2_P01_L3; M69/2_P01_L4; M69/2_P01_L5; M69/2_P01_L6; M69/2_P01_LM1; M69/2_P01_LM2; M69/2_P01_LM3; M69/2_P01_LM4; M69/2_P01_LM6; Meteor (1986); Miocene island arc; Morocco; OBH; OBS; Ocean bottom hydrophone; Ocean bottom seismometer; Seismic measurement station; Seismic refraction profile; SEISMS; SEISREFR; Spain  (1)
  • Earth Sciences and Geology  (1)
  • Geology  (1)
  • Geomorphology  (1)
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  • 1
    Publication Date: 2024-04-20
    Description: In August and September of 2006 the seismic WESTMED project was conducted in the Western Mediterranean aboard the German RV "Meteor" during the cruise M69/2. Profile 01 (p01) was recorded sucessfully in the Alboran Sea on 11 onshore stations and 16 offshore stations (ocean-bottom seismometers and hydrophones - OBS/OBH). The offshore stations were distributed every 4.5 km. Shoots were fired offshore along a ~150 km line, using two 32-litres BOLT air-guns array operated at 140 bar, fired every 60 s (~200 m). Total length of the seismic line is 360 km, running from the Gulf of Almeria, Spain southward approaching Morocco. Seismic segy data are reduced at 6 km/s. Please note that records from landstations start at 0 sec while OBS and OBH start at -2 sec.
    Keywords: Alboran Sea; Binary Object; Binary Object (File Size); Continental crust; crustal strcuture; Elevation of event; Event label; Latitude of event; Longitude of event; M69/2; M69/2_OBH01; M69/2_OBH02; M69/2_OBH03; M69/2_OBH04; M69/2_OBH05; M69/2_OBH06; M69/2_OBH07; M69/2_OBH08; M69/2_OBH09; M69/2_OBH17; M69/2_OBH18; M69/2_OBH19; M69/2_OBH20; M69/2_OBH21; M69/2_OBH22; M69/2_OBH23; M69/2_OBH24; M69/2_OBS12; M69/2_OBS13; M69/2_OBS14; M69/2_OBS15; M69/2_OBS16; M69/2_p01; M69/2_P01_L1; M69/2_P01_L10; M69/2_P01_L2; M69/2_P01_L3; M69/2_P01_L4; M69/2_P01_L5; M69/2_P01_L6; M69/2_P01_LM1; M69/2_P01_LM2; M69/2_P01_LM3; M69/2_P01_LM4; M69/2_P01_LM6; Meteor (1986); Miocene island arc; Morocco; OBH; OBS; Ocean bottom hydrophone; Ocean bottom seismometer; Seismic measurement station; Seismic refraction profile; SEISMS; SEISREFR; Spain
    Type: Dataset
    Format: text/tab-separated-values, 49 data points
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  • 2
    Publication Date: 2022-05-25
    Description: © The Author(s), 2016. This is the author's version of the work and is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Tectonophysics 689 (2016): 25-39, doi:10.1016/j.tecto.2016.03.009.
    Description: The Palomares continental margin is located in the southeastern part of Spain. The margin main structure was formed during Miocene times, and it is currently part of the wide deformation zone characterizing the region between the Iberian and African plates, where no well-defined plate boundary occurs. The convergence between these two plates is here accommodated by several structures, including the left lateral strike-slip Palomares Fault. The region is characterized by sparse, low to moderate magnitude (Mw 〈 5.2) shallow instrumental earthquakes, although large historical events have also occurred. To understand the recent tectonic history of the margin we analyze new high-resolution multibeam bathymetry data and re-processed three multichannel seismic reflection profiles crossing the main structures. The analysis of seafloor morphology and associated subsurface structure provides new insights of the active tectonic features of the area. In contrast to other segments of the southeastern Iberian margin, the Palomares margin contains numerous large and comparatively closely spaced canyons with heads that reach near the coast. The margin relief is also characterized by the presence of three prominent igneous submarine ridges that include the Aguilas, Abubacer and Maimonides highs. Erosive processes evidenced by a number of scars, slope failures, gullies and canyon incisions shape the present-day relief of the Palomares margin. Seismic images reveal the deep structure distinguishing between Miocene structures related to the formation of the margin and currently active features, some of which may reactivate inherited structures. The structure of the margin started with an extensional phase accompanied by volcanic accretion during the Serravallian, followed by a compressional pulse that started during the Latemost Tortonian. Nowadays, tectonic activity offshore is subdued and limited to few, minor faults, in comparison with the activity recorded onshore. The deep Algero-Balearic Basin is affected by surficial processes, associated to halokinesis of Messinian evaporites.
    Description: The authors acknowledge the support from the Spanish Ministry of Economy and Competitiveness through the Complementary Action ESF TopoEurope TOPOMED (CGL2008-03474-E/BTE), National Projects SHAKE (CGL2011-30005-C02-02) and INSIGHT (CTM2015-70155-R), and the EU-COST Action FLOWS (ES 1301).
    Description: 2017-03-18
    Keywords: Multichannel Seismic reflection ; Swath-bathymetry ; Geomorphology ; SE Iberia margin ; Geodynamic evolution
    Repository Name: Woods Hole Open Access Server
    Type: Preprint
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  • 3
    Publication Date: 2022-11-18
    Description: Seismology and Earthquake Engineering Research Infrastructure Alliance for Europe (SERA), H2020, grant agreements 730900.
    Description: Published
    Description: 2T. Deformazione crostale attiva
    Description: 6T. Studi di pericolosità sismica e da maremoto
    Description: 4IT. Banche dati
    Keywords: Geology ; Earth sciences of Europe ; Earth sciences of Africa ; Earth sciences of Asia ; Earth Sciences and Geology ; earthquakes ; hazard model ; seismogenic faults ; slip rate ; crustal fault sources ; subduction fault sources ; Seismology ; 04.04. Geology ; 04.06. Seismology ; 04.07. Tectonophysics
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: web product
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