256 resultados para Lanzarote


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[EN] The last 5 Myr  are characterized by cliamatic variations globally and are reflected in ancient fossiliferous marine deposits visible in the Canary Islands. The fossils contained are identificated as paleoecological and paleoclimatic indicators. The Mio-Pliocene Transit is represented by the coral Siderastrea micoenica Osasco, 1897; the gastropods Rothpletzia rudista Simonelli, 1890; Ancilla glandiformis (Lamarck, 1822); Strombus coronatus Defrance, 1827 and Nerita emiliana Mayer, 1872 and the bivalve Gryphaea virleti Deshayes, 1832 as most characteristic fossils  and typical of a very warm climate and littoral zone. Associated  lava flows  have been dated radiometrically  and provides a range between  8.9 and about 4.2 Kyr. In the mid-Pleistocene, about 400,000 years ago, the called Marine Isotope Stage 11, a strong global warming that caused a sea level rise happens. Remains of the MIS 11  are preserved on the coast of Arucas (Gran Canaria), and associated with a tsunami in Piedra Alta (Lanzarote). These fossilifeorus  deposits contains the bivalve Saccostrea cucullata (Born, 1780), the gastropod Purpurellus gambiensis (Reeve, 1845) and the corals Madracis pharensis (Heller, 1868) and Dendrophyllia cornigera (Lamarck, 1816). Both sites have been dated by K-Ar on pillow lavas (approximately 420,000 years) and by Uranium Series on corals (about 481,000 years) respectively. The upper Pleistocene starts with another strong global warming known as the last interglacial or marine isotope  stage (MIS) 5.5, about 125,000 years ago, which also left marine  fossil deposits exposed in parallel to current in Igueste of San Andrés (Tenerife),  El Altillo, the  city of Las Palmas de Gran Canaria  and Maspalomas (Gran Canaria),  Matas Blancas, the Playitas and Morrojable (Fuerteventura ) and in Playa Blanca and Punta Penedo (Lanzarote ). The fossil coral Siderastrea radians (Pallas , 1766 ) currently living in the Cape Verde Islands , the Gulf of Guinea and the Caribbean has allowed Uranium series dating. The gastropods Strombus bubonius Lamarck, 1822 and Harpa doris (Röding , 1798 ) currently living in the Gulf of Guinea. Current biogeography using synoptic data obtained through satellites provided by the ISS Canary Seas provides data of Ocean Surface Temperature (SST) and Chlorophyll a (Chlor a) . This has allowed the estimation of these sea conditions during interglacials compared to today .

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[ES]El lugar que ocupan en las pirámides alimentarias y su papel regulador de determinadas especies, hacen de las rapaces un grupo de especial interés. Su importancia se incrementa en Canarias al tratarse de ecosistemas aislados donde, al presentar pocos eslabones, la fragilidad de las cadenas tróficas es manifiesta. Las aves rapaces nocturnas de nuestro archipiélago pertenecen a dos especies: el búho chico (Asio otus canariensis), motivo de este trabajo; y la lechuza común (Tyto alba) con dos subespecies T.a.alba y T.a. gracilirostris, esta última restringida a las dos islas más orientales de Lanzarote y Fuerteventura. Si se compara su distribución dentro del marco macaronésico, se aprecia que el poblamiento de Canarias ha debido producirse de forma independiente del resto de las islas de ésta región zoogeográfica (si bien Cabo Verde presenta diferencias faunísticas, de por sí). Se aportan datos acerca de la morfología, biología y ecología de esta especie canaria y sus diferencias con la especie típica A. o. otus, así como metodología de muestreo, conservación del material y contabilización de las especies-presa. Así mismo se analiza su régimen alimentario en la isla de Gran Canaria y se comprueba si existen diferencias estacionales, como sucede en otras partes del mundo. Por último, cabe destacar la presencia de reptiles en la dieta de esta especie, hecho muy poco frecuente fuera de Canarias, y que ha sido confirmado posteriormente por otros autores en estudios realizados posteriormente en otras islas del archipiélago.

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[ES] La implantación política del régimen liberal en la España del XIX, necesitará de una organización política que actuará como elemento de dominaciónl social, lo que se consigue a través del control  de las instituciones de poder y de los medios que permiten el acceso a ellas por parte de estos grupos hegemónicos. Este estudio se centra en  esos medios y en las instituciones de poder político más próximas a la población, dentro del escalafón de la adminsitración estatal, como son los ayuntaminetos. En este caso se trata del municipio más importante de  una isla periférica: Arrecife en Lanzarote, y en un espacio singular como es el Archipiélago canario.

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[EN]Spatial variability of wave energy resource around the coastal waters of the Canary Archipelago is assessed by using a long-term data set derived by means of hindcasting techniques. Results revea( the existence of large differences in the energetic content available in different zones of the archipelago, mainly during spring and autumn. Areas with a higher wave power leve( are the north edge of Lanzarote, western side of Lanzarote and Fuerteventura, north and northwest in La Palma and El Hierro, as well as the north coast of Tenerife. The available energy potential slightly decreases in the north side of Gran Canaria and La Gomera.

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[EN] There are few previous references to fossil crustaceans for the Neogene marine layers of the Canary Islands (Spain). The Mio-Pliocene marine sedimentary layers in the eastern islands (Gran Canaria, Fuerteventura and Lanzarote) were previously characterised by the presence of numerous fossil fauna, mainly anthozoans and molluscs, which correspond to an equatorial-typepalaeoclimate, warmer than the present climate. This Mio-Pliocene transition dated between 9.3 and 4.1 Ma. In this paper, 12 fossil crustacean taxa are identified and classified, including decapods and barnacles: Balanus concavus Bronn, 1831, Balanus spongicola Brown, 1827, Balanus perforatus Bruguière, 1789, Chenolobia testudinaria Linnè, 1767, Tetraclita cf. rubescens Darwin, 1854, Callianassa matsoni Rathbun, 1935, Callianassa sp., Upogebia sp, Eriphia aff. verrucosa (Forskal, 1775) , Maja sp., Scylla michelini Milne-Edwards, 1861 and Ocypode sp. [...]

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[ES]Apuntes breves sobre la importancia de la villa de Teguise en la historia insular de Lanzarote durante el régimen señorial.

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[EN] During the archaeological excavations carried out in the Villaverde Cave sorne bone remains (left mandible fragment, proximal fragment of scapula and two left humerus) of two specimes of monk seals (Monachus cf. monachus) were found. Toe cave, which is a vokanic tunnel, was occupied during the firts Centuries of our Era by the former inhabitants of the Fuerteventura Island. Toe monk seals,named in the past in Canaries "Lobos marinos", were very numerous according to the Chronicles of the Conquerers (1404-1408) and for that reason the small island situated between Lanzarote and Fuerteventura lslands was named '"Isla de Lobos". These seals became extinct at the end of the XV Century and the remains found at Villaverde are the only ones known.

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[ES] Los depósitos marinos fosilíferos de Fuerteventura y Lanzarote habían sido interpretados por los autores como diferentes niveles del Cuaternario. Los Neogastrópodos colectados pertenecen al Plioceno inferior (Murex conglobatus, Nucella plessisi, Ancilla glandiformis, Conus pelagicus y Conus mercati) y al Pleistoceno superior (Murex saxatilis, Thais haemastoma, Harpa rosea, Conus papilionaceus, Conus mediterraneus y Conus testudinarius). Confirman un carácter muy cálido, ya revelado por los Strombus coronatus y los Strombus bubonius (Meco, 1977), que permiten relacionarlos respectivamente con un episodio evidenciado en el paleoclima del Plioceno y con el «Ultimo interglacial». La posición de los depósitos en relación con basaltos datados radiométricamente (Meco y Stearns, 1981) y paleomagnéticamente (Fuster y Carracedo, 1979) y con dataciones U-Th en curso (Pomel y Meco) dan un interés especial a la determinación paleontológica.

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Geodetic volcano monitoring in Tenerife has mainly focused on the Las Cañadas Caldera, where a geodetic micronetwork and a levelling profile are located. A sensitivity test of this geodetic network showed that it should be extended to cover the whole island for volcano monitoring purposes. Furthermore, InSAR allowed detecting two unexpected movements that were beyond the scope of the traditional geodetic network. These two facts prompted us to design and observe a GPS network covering the whole of Tenerife that was monitored in August 2000. The results obtained were accurate to one centimetre, and confirm one of the deformations, although they were not definitive enough to confirm the second one. Furthermore, new cases of possible subsidence have been detected in areas where InSAR could not be used to measure deformation due to low coherence. A first modelling attempt has been made using a very simple model and its results seem to indicate that the deformation observed and the groundwater level variation in the island may be related. Future observations will be necessary for further validation and to study the time evolution of the displacements, carry out interpretation work using different types of data (gravity, gases, etc) and develop models that represent the island more closely. The results obtained are important because they might affect the geodetic volcano monitoring on the island, which will only be really useful if it is capable of distinguishing between displacements that might be linked to volcanic activity and those produced by other causes. One important result in this work is that a new geodetic monitoring system based on two complementary techniques, InSAR and GPS, has been set up on Tenerife island. This the first time that the whole surface of any of the volcanic Canary Islands has been covered with a single network for this purpose. This research has displayed the need for further similar studies in the Canary Islands, at least on the islands which pose a greater risk of volcanic reactivation, such as Lanzarote and La Palma, where InSAR techniques have been used already.

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The accuracy of Tomás López´s historical cartography of the Canary Islands included in the “Atlas Particular” of the Kingdoms of Spain, Portugal and Adjacent Islands” is analyzed. For this purpose, we propose a methodology based on Geographic Information Systems (GIS), a comparison of digitized historical cartography population centres with current ones. This study shows that the lineal error value is small for the smaller islands: Lanzarote, El Hierro, La Palma and La Gomera. In the large islands of Tenerife, Fuerteventura and Gran Canaria, the error is smaller in central zones but increases towards the coast. This indicates that Tomás López began his cartography starting from central island zones, accumulating errors due to lack of geodetic references as he moved toward the coast.

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A pesar de la importancia del estudio y análisis de la arquitectura vernácula en la enseñanza de la Arquitectura —no sólo desde el punto de vista tipológico y constructivo, sino también como elemento de aprendizaje en relación a la correcta adaptación a unas condiciones del clima, de las formas de vida, usos y costumbres— ésta raramente se incluye el programa de las asignaturas de las Escuelas de Arquitectura ni en sus Planes de Estudio, excepto en casos puntuales y asignaturas optativas. La presente comunicación expone nuestra experiencia, junto con el profesor Javier de Cárdenas y Chávarri, en la enseñanza de este tipo de arquitecturas y sus valores a distintos grupos de alumnos —no sólo del campo de la Arquitectura— en los Cursos Universitarios de Verano en Lanzarote organizados por el Centro Científico Cultural Blas Cabrera y la Academia de Ciencias e Ingenierías de Lanzarote y patrocinados por la Fundación Diego de Sagredo y la Cátedra ―Gonzalo de Cárdenas‖ de Arquitectura Vernácula, a partir del año 2003.

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More than 20 mega-landslides have been described in the Canary Islands affecting the flanks of the volcanic edifices. Gliimar and La Orotava landslides, in Tenerife, are two exceptional cases due to their huge dimensions and outstanding geomorphological features. The estimated volume of these landslides exceed tens of cubic km. Tsunami deposits have been also identified in some of the islands of the archipelago probably associated to the large landslides of the islands flanks. An investigation has been carried out to explain the causes of these large instability processes and their failure mechanisms. One of the main aspects investigated was the geomechanical characteristics of the volcanic rock masses, specially the hyaloclastite rocks forming the substratum underlying the emerged volcanic building. The low strength and high deformability properties of these rocks have played a fundamental role on the stability of the island flanks. The results have shown the gravitational origin of these instability processes as the main failure mechanism. Volcanic eruptions or large earthquakes could be contributing factors to the instability, but according with the data obtained in Gliimar and La Orotava cases they are not necessary as triggering factors. As a result of the field work carried out in the frame of the project, three large tsunami deposits have been identified in the islands of Lanzarote, Tenerifc and Gran Canaria attributed to rnega-Iandslides, possibly related to Guimar and La Orotava. A Sumrnary of their main features is described.

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El objetivo principal de este trabajo es estudiar la distribución espacial de los centros eruptivos monogenéticos según el análisis de vecino más próximo de Poisson, propuesto por Clark y Evans (1954), en las Islas Canarias. Se pretende adquirir así unos valores cuantitativos que permitan interpretar si los centros eruptivos monogenéticos se distribuyen de forma aleatoria, concentrada o dispersa en cada isla. La confrontación de estos resultados con la bibliografía ayudará a interpretarlos mediante comparación. Como objetivo secundario y parte fundamental del trabajo se presenta la necesidad y el fin de adquirir conocimientos teóricos y prácticos de análisis espacial, además de destreza en el uso de lenguajes y entornos de programación adecuados para este tipo de estudios. Otro de los objetivos es desarrollar una aplicación que haga extensible este tipo de estudios de forma sencilla y ponga a disposición, en el caso de una publicación final, de la comunidad científica y de los usuarios a nivel universitario, una herramienta eficaz de análisis cuantitativo para hallar los índices requeridos para llevar a cabo el análisis de vecino más próximo de Poisson. El área de estudio son las Islas Canarias que conforman un archipiélago de siete islas mayores (Fig. 1): Tenerife, Fuerteventura, Gran Canaria, Lanzarote, La Palma, La Gomera y El Hierro; cuatro islas menores: Lobos, La Graciosa, Montaña Clara y Alegranza; y varios roques. Queda comprendido entre los paralelos 27 º 37 ' N y 29 º 35 ' N (Punta de La Restinga, en El Hierro; Punta de los Mosegos, en la isla de la Alegranza) y entre los meridianos 13 º 20 ' W y 18 º 10 ' W (Roque del Este; Punta de Orchilla, en El Hierro) y se encuentra a distancias de entre 100 km y 500 km de la costa noroccidental africana. Queda englobado dentro de la región de la Macaronesia, conjunto de cinco archipiélagos de origen volcánico situado en el Atlántico Oriental, a saber: Azores, Madeira, Salvajes, Canarias y Cabo Verde; y está limitada por los paralelos 14 º 49 ' N y 39 º 45 ' N, y por los meridianos 13 º 20 ' W y 31 º 17 ' W, estando separados entre sus puntos norte y sur por 2 700 km y entre sus puntos este y oeste por 1 800 km de distancia (Gosálvez et al., 2010). Sobre el origen del archipiélago y su contexto geodinámico, se han propuesto varias hipótesis, e.g.: Carracedo et al. (1998), Anguita y Hernán (2000), Ancochea et al. (2006), en las que aún no queda completamente claro el origen de la Islas Canarias, ya que algunos dan un protagonismo mayor a la actividad tectónica como causante del ascenso del magma a través de la corteza y otros defienden la existencia de un punto caliente como verdadera causa del volcanismo en Canarias.

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The presence of Harpa doris Röding, 1798 in marine deposits of the last interglacial period, ~130-120 ka (marine isotope stage or MIS 5.5) in the Canary Islands (Gran Canaria, Lanzarote and Fuerteventura) enabled us to compare this occurrence with its present habitat in the Gulf of Guinea and the Cape Verde Islands, well to the south. This comparison leads to the conclusion that sea surface temperatures (SSTs) in the waters around the Canary Islands during the last interglacial period were at least 3.3 °C higher than today. H. doris is found in association with the large gastropod Persististrombus latus (Gmelin, 1791) as well as the coral Siderastrea radians (Pallas, 1766). The presence of these extralimital southern,warm-water species in the Canary Islands during the last interglacial period also implies a northward expansion of plankton-feeding larvae in seawater with a high chlorophyll-a content. Such conditionswould require a shortening of the southern arm of the cool Canary Current that dominates the waters around the Canary Islands at present. Marine deposits dating to ~400 ka (MIS 11) are also found on the Canary Islands. In these deposits, the presence of Saccostrea cucullata (Born, 1778) allows a comparison with its present habitat in the Gulf of Guinea. In this analysis, we conclude that SSTs in waters around the Canary Islands during this major interglacial period were at least 4.2 °C higher than today. Middle Pleistocene fossils of S. cucullata have also been found in the western Mediterranean Sea and Morocco, as well as the Cape Verde Islands. If these deposits also date to MIS 11, SST warming could have been a regional phenomenon, including much of the eastern Atlantic Ocean and Mediterranean Sea.