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Título

Seafloor Morphology and Processes in the Alboran Sea

AutorErcilla, Gemma CSIC ORCID; Vázquez, Juan Tomás; Alonso, Belén CSIC ORCID; Bárcenas-Gascón, Patricia CSIC ORCID; Casas, David CSIC ORCID ; D'Acremont, Elia; Estrada, Ferrán; Fernández-Salas, L.M. CSIC ORCID ; Galindo-Zaldívar, Jesús; Juan-Valenzuela, Carmen; Lobo, F.J.; López-González, Nieves CSIC ORCID; Palomino, Desirée; Sánchez-Guillamón, Olga; Chourak, Mimoun; Gómez-Ballesteros, María; El-Moumni, Bouchta; Peláez, José Antonio; Valencia, Javier; Gorini, Christian
Palabras claveCentro Oceanográfico de Málaga
Morphology
Medio Marino
Tectonics
Sedimentary environments
Mass-movements
Geohazards
Alboran Sea
Fecha de publicación23-may-2021
EditorSpringer
CitaciónAlboran Sea - Ecosystems and Marine Resources. (ed.). Springer. Cham. 2021. 939 pp: 157-205
ResumenThe seafloor of the Alboran Sea reflects its complex tectonic, sedimentary, and oceanography dynamics as a consequence of the geological context, involving interaction between the Eurasian and African plates, and oceanographic context, as it is where the Atlantic and Mediterranean waters meet. Their physiography has a semi-enclosed configuration characterized by two margins (the Spanish Iberian and North Africa—mostly Moroccan margins) enclosing deep basins. Tectonic activity is mainly attested by folds and faults that predominantly affect the central and eastern seafloor sectors, as well as numerous seamounts and fluid-flow features (pockmarks, mud volcanoes, and diapirs) that dot the seafloor. The sedimentary and oceanographic processes allow us to distinctly define two principal environments in the Alboran Sea: the shallow proximal margin (continental shelf); and the deep distal margin (continental slope and base of the slope) with the adjacent sub-basins. The shelf mostly comprises prodeltaic and infralittoral prograding wedges, with local bedform fields, submarine valleys, and wave-cut terraces. Coastal and fluvio-marine sedimentary processes, acting since the last glacial period, are responsible for these features. The deep marine environment is characterised by the ubiquity of contourites, whose continuity is interrupted by turbidite systems, canyons, and landslides. The alongslope action of the Mediterranean waters and their interfaces with the Atlantic water has been the main process governing transport, seafloor reworking, and sedimentation of contourites. Mass-movement processes are responsible for the formation of: (1) turbidite systems—turbidity flows and mass flows were dominant during the last glacial sea-level lowstand, evolving to dilute gravity flows during present interglacial high stand; and (2) landslides—the main triggering factors comprising over-steepening, seismicity, under consolidation due to overpressure by interstitial fluids, stratigraphy, and high sedimentation rates. Locally, still-undetermined biological activity in the Spanish and coral activity in the Moroccan margin generated fields of mounded bioconstructions. The seafloor morphology of the Alboran Sea offers interesting clues for assessing the main potential geological hazards, with tectonic seismicity and landslides (as well as their related tsunamis) being some of the most important potential hazards affecting coastal populations. In addition, the seafloor morphology in combination with assemblages of habitat-forming species enables habitat identification and mapping.
Versión del editorhttps://link.springer.com/chapter/10.1007%2F978-3-030-65516-7_6
URIhttp://hdl.handle.net/10261/320771
DOI10.1007/978-3-030-65516-7_6
ISBN978-3-030-65516-7
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