999 resultados para Geology, Structural -- Catalonia -- Guilleries Mountains


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The Guilleries are a small and mountainous area located in the north-westem part of the Catalonian Coastal Ranges where metamorphic and igneous Paleozoic rocks are exposed. After the main hercynian folding this area was affected by a brittle deformation that is mainly manifested by the intrusion of a very large number of dykes of granodiorite and the development of a complex joint system. Trends of dykes indicate that their intrusion was related to a SE-NW extension, whose estimated value is 40% on an average. This extension seems to stand, although without any associated igneous event, with the development of NE-SW directed joints which make the main set. Five families more were developed later, onegently-dipping and fou upright; the latter trending roughly SE-NW, ENE-WSW, ESE-WNW and N-S. AU the joint sets appear in the metasedimentary Paleozoic rocks and in the hercynian intrusive bodies. Concerning the ages, joints that belong to the NE-SW and SE-NW directed sets and also those slightly dipping have been attributed to the late-hercynian times and all the other are considered to be later

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The Guilleries are a small and mountainous area located in the north-westem part of the Catalonian Coastal Ranges where metamorphic and igneous Paleozoic rocks are exposed. After the main hercynian folding this area was affected by a brittle deformation that is mainly manifested by the intrusion of a very large number of dykes of granodiorite and the development of a complex joint system. Trends of dykes indicate that their intrusion was related to a SE-NW extension, whose estimated value is 40% on an average. This extension seems to stand, although without any associated igneous event, with the development of NE-SW directed joints which make the main set. Five families more were developed later, one gently-dipping and fou upright; the latter trending roughly SE-NW, ENE-WSW, ESE-WNW and N-S. AU the joint sets appear in the metasedimentary Paleozoic rocks and in the hercynian intrusive bodies. Concerning the ages, joints that belong to the NE-SW and SE-NW directed sets and also those slightly dipping have been attributed to the late-hercynian times and all the other are considered to be later

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L’objectiu principal d’aquest projecte és establir les propostes de gestió necessàries per tal de poder preservar els espais oberts a la zona de Sant Sadurní d’Osormort (Guilleries), i poder ho fer extensible a altres zones de Catalunya i d’Europa. Per dur a terme l’ estudi utilitzen com indicador els lepidòpters ropalòcers de zones obertes . Aquest projecte proposa millores en la gestió del territori d’estudi, per tal d’aconseguir una millora en l’ecosistema i una millor connectivitat biològica

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L’objectiu principal d’aquest projecte és establir les propostes de gestió necessàries per tal de poder preservar els espais oberts a la zona de Sant Sadurní d’Osormort (Guilleries), i poder ho fer extensible a altres zones de Catalunya i d’Europa. Per dur a terme l’ estudi utilitzen com indicador els lepidòpters ropalòcers de zones obertes . Aquest projecte proposa millores en la gestió del territori d’estudi, per tal d’aconseguir una millora en l’ecosistema i una millor connectivitat biològica

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Cover title.

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On cover: San Francisco meeting, September, 1915.

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El macizo de Les Guilleries está formado por materiales metasedimentarios e ígneos de edad paleozoica. Los niveles mas bajos que afloran han sido atribuidos al Cambro-Ordovícico y consisten en dos tramos esencialmente pelíticos bien diferenciados separados por un nivel de ortogneises de varios centenares de metros de espesor. Por encima, se situa una serie vulcano-detrítica, con abundantes niveles de rocas volcánicas ácidas, y que ha proporcionado braquiópodos de edad Caradoc. El Silúrico y el Devónico, muy fragmentarios han sido también datados mediante fósiles. Toda la sucesión fue deformada y metamorfizada durante la orogenia herciniana. La deformación es polifásica y ha dado lugar al desarrollo de foliacions generalizadas en el brea. En las zonas mis profundas, la foliación regional es una crenulación que pliega una foliación anterior. En las zonas mas superficiales solo se observa una foliación de tipo ccslaty cleavagen. El metamorfismo hercinico afecta en mayor o menor grado a toda la serie. En las zonas mis profundas alcanza la facies anfibolitica de alto grado, con el desarrollo en las metapelitas de cordierita y feldespato potásico, mientras que en las zonas más superficiales s610 se alcanza la formación de clorita. En la región se han producido una serie de intrusiones ligadas a la orogenia herciniana. Las mis antiguas son unos filones de diorita y cuarzodiorita que se encuentran intensamente deformados. Posteriormente se produjo la intrusión de leucogranitos de dos micas, que son muy abundantes en las zonas más metamórficas y que en ocasiones se encuentran también algo deformados. Finalmente, se elnplazaron 10s granitoides tardios, que han originado extensas aureolas de metamorfismo de contacto.

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LA aplicación del modelo de la 'deformación discontinua' propuesto pr F. ARTHAUD y M. MATTAUER al análisis de la tectónica frágil de dos canteras del macizo de Garraf (prov. de Barceona, España), permite diferenciar las microestructuras pertenecientes a dos deformaciones distintas ('compresión' y 'distendión·) y caracterizar las direcciones principales de deformación para cada una de ellas.

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Iberia underwent intraplate deformation during the Mesozoic and Cenozoic. In eastem Ibena, compression took place during the Palaeogene and early Miocene, giving rise to the Iberian Chain, and extension started during the early Miocene in the coastal areas and the Valencia trough; during early Miocene compression continued in the western Iberian Chain whereas extension had started in the eastern Iberian Chain. From the kinematic data obtained from the major compressional and extensional structures formed dunng the Cenozoic, a simple dynamic model using Bott's (1959) formula is presented. The results show that both extension and compression may have been produced assuming a main horizontal stress-axis approximately N-S, in a similar direction that the convergence between Europe, Ibena and Afnca dunng the Cenozoic.

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En la present nota indiquem un seguit de novetats corològiques per a la flora vascular dels massissos de les Guilleries i del Collsacabra.

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Includes index.

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The Pyrenees are an alpine chain with hercynian basement rocks that outcrop in a large area called the Axial Zone. These rocks have been involved in the alpine deformation events although their main structural features resulted from the Hercynian orogeny. A relevant characteristic of the Hercynian basement is a change in structural style in depth which has been commonly studied and interpreted in the Pallaresa Anticlinorium, in the Central Pyrenees. This anticlinorium is a complex hercynian structural unit whose southern part belongs to the suprastructure whereas the northern part corresponds mostly to a transition zone between the infrastructure and the suprastructure. Rocks of the suprastructure show a steeply dipping slaty cleavage as the dominant structure, which is overprinting folds and thrusts rarely going with pervasive deformation. The transition zone results from a slaty cleavage, very often close to the bedding, overprinted by one or two steep crenulation cleavages. A gradual boundary exists between both structural levels and it can be observed that the deformation developing slaty cleavage in the suprastructure grades to a crenulation foliation in the transition zone. The gradual character of that boundary, as seen in the northern end of the transition zone, suggests that the southern sharp boundary is not original. That boundary is interpreted as a northward dipping inverse fault, possibly with Alpine age. That fault causes a relative uplift of the rocks of the transition zone and gives this sharp boundary with the suprastructural levels. It provokes the asymmetry in the Pallaresa anticlinorium

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The As Pontes basin (12 km2), NW Iberian Peninsula, is bounded by a double restraining bend of a dextral strike-slip fault, which is related to the western onshore end of the Pyrenean belt. Surface and subsurface data obtained from intensive coal exploration and mining in the basin since the 1960s together with additional structural and stratigraphic sequence analysis allowed us to determine the geometric relationships between tectonic structures and stratigraphic markers. The small size of the basin and the large amount of quality data make the As Pontes basin a unique natural laboratory for improving our understanding of the origin and evolution of restraining bends. The double restraining bend is the end stage of the structural evolution of a compressive underlapping stepover, where the basin was formed. During the first stage (stepover stage), which began ca. 30 Ma ago (latest Rupelian) and lasted 3.4 My, two small isolated basins bounded by thrusts and normal faults were formed. For 1.3 My, the strike-slip faults, which defined the stepover, grew towards each other until joining and forming the double restraining bend, which bounds one large As Pontes basin (transition stage). The history of the basin was controlled by the activity of the double restraining bend for a further 3.4 My (restraining bend stage) and ended in mid-Aquitanian times (ca. 22 Ma).