138 resultados para ESTRATIGRAFIA


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No Estado de São Paulo, a maioria dos poços profundos perfurados localiza-se em terrenos sedimentares. Assim sendo foi realizado este trabalho a fim de verificar a aplicabilidade de métodos geofísicos à procura de água subterrânea no Estado. A água da chuva atingindo a superfície do terreno toma caminhos a saber: evaporação, escoamento e infiltração. Em face da porosidade, permeabilidade e força da gravidade, a água de infiltração toma o caminho descendente até: - atingir uma zona permeável (saturada ou não) e seu fluxo. - atingir uma rocha sedimentar impermeável ou rocha ígnea sã. - saturar fissuras existentes em rochas ígneas sãs. Basicamente que um poço seja produtor de água, é necessária a extração de água acumulada nas seguintes condições: 1- água acumulada em rochas permeáveis saturadas. 2- água acumulada em fissuras de rochas ígneas sãs. 3- água acumulada em depressões existentes ou na superfície de rochas ígneas ou do embasamento cristalino, coberto por rochas porosas e permeáveis. Baseado nestas formas de ocorrência de água subterrânea, as pesquisas de campo foram orientadas no sentido de: - identificar pela interpretação das curvas ou mesmo uma curva de sondagem elétrica, aquela camada aqüífera, saturada de água e já conhecida \"a priori\" como aqüífero, bem como estabelecer a sua profundidade, espessura e comportamento geológico. - verificar a profundidade do nível freático. - mapear a superfície do embasamento cristalino, procurando achar nela, depressões causa das por erosões pretéritas. Procurou-se verificar também: até que ponto, em um dado local uma estratigrafia geológica conhecida, corresponde a uma \"estratigrafia geofísica\" obtida por medidas na superfície. - determinar a resistividade, ou resistividades, das diferentes formações litológicas. - procurar correlacionar variações laterais de resistividade de uma certa camada geológica com as variações na sua granulometria e litologia ou sais ) dissolvidos na solução que a satura. De um modo geral a eletrorresistividade fornece bons resultados quando aplicada à procura de água subterrânea no Estado de São Paulo. Nos sedimentos do Grupo Tubarão (Permo-Carbonífero) verifica-se uma correspondência entre altos valores de resistividade e as altas vazões dos poços (vazão específica). A \"estratigrafia geofísica\" obtida corresponde muito bem à estratigrafia geológica. Espessuras dos derrames de basalto (Eocretáceo), intrusões de diabásio, arenito da Série Bauru (Neocretáceo), arenito da Formação Botucatu (Eocretáceo), sedimentos do Grupo Tubarão (Permo-Carbonífero) e camadas de sedimentos recentes são facilmente determinadas. Na região da Praia Grande existem lençóis de água doce sobrejazendo à água salobra e salgada.

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O Devoniano ocorrente nos Estados do Paraná e São Paulo, Brasil, é de longa data conhecido; contudo os dados sobre a sua estratigrafia são até hoje escassos. Particular atenção foi ultimamente dada a este problema, considerando além das regiões clássicas, mais uma nova, Lambedor, que só se tornou conhecida como fossilífera em 1946. Os resultados obtidos permitem considerar acima do arenito basal afossilífero Furnas, camadas de transição com fósseis escassos, consistindo, na vila de Tibagi, de pequenas intercalações de folhelho em arenito grosseiro, o qual se torna argiloso e fossilífero mais no topo. Em Jaguariaíva, estas camadas são constituídas de siltito, passando superiormente a arenito fino, ambos fossilíferos. Estas camadas de transição são seguidas por folhelhos fossilíferos com intercalações arenosas - formação Ponta Grossa. A descoberta nas secções de Tibagi e Lambedor, de repetições de arenito litológica e faunisticamente comparáveis a um arenito colocado anteriormente no topo da formação Ponta Grossa com o nome de arenito de Tibagi, e a ausência do mesmo em Jaguariaíva, onde afloram quase 100 metros de sedimentos fossilíferos, indica a natureza restrita do mesmo. Acima do arenito de Tibagi e do folhelho intercalado, segue uma seqüência de folhelhos fossilíferos, a qual, em Lambedor, é capeada por siltito com intercalações de arenito com fósseis devonianos. Este arenito parece ter uma ocorrência muito local e restrita. Sobre este arenito devoniano em Lambedor e sobre o folhelho sotoposto em Tibagi, ocorre uma seqüência de arenitos grosseiros afossilíferos com intercalações de arenito mais fino e com estratificação cruzada e formando escarpas. Este arenito é um tanto parecido com o Furnas, e a ele equiparado por uns, evocando para isto falhas hipotéticas e por outros colocado no topo do Devoniano, com o nome de arenito Barreiro, e por outros ainda no Carbonífero (Série Itararé-Tubarão). As seguintes razões permitem considerá-lo como pertencente à base da série Itararé-Tubarão (Série Carbonífera com parte dos sedimentos de origem glacial ou flúvio-glacial): 1) - Grandes seixos angulares na base, em Tibagi. 2) - Varvito na base, intercalado em arenito, em Lambedor. 3) - Seixos angulares e estriados no meio da massa arenítica, em Lambedor. 4) - Disconformidade indicada pela posição deste arenito respectivamente sobre o siltito superior devoniano, arenito fácies Tibagi e sobre folhelho devoniano acima ou abaixo deste arenito, em Lambedor. Certas variações faunísticas, pelo menos em parte, apenas de natureza geográfica, foram notadas nas 4 principais localidades: - Ponta Grossa, Tibagi, Lambedor e Jaguariaíva. Minuciosos perfis geológicos com a discriminação dos fósseis por camada, foram feitos e a maioria da fauna devoniana descrita por Clarke (1913), e outros autores, teve a sua distribuição estratigráfica, pelo menos parcialmente esclarecida.

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Tese de doutoramento (co-tutela), Geologia (Paleontologia e Estratigrafia), Faculdade de Ciências da Universidade de Lisboa, Université Claude Bernard Lyon 1, 2016

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O objeto de estudo desta dissertação é um pequeno tríptico do Palácio Nacional da Ajuda, provavelmente dos finais do séc. XV, sobre o qual existe pouca informação. A obra pertence ao acervo de pintura antiga deste palácio/museu (inv. 3540) e encontra-se exposta no “Atelier de Pintura de D. Luís”. Trata-se de uma pintura sobre tábua de carvalho, em mau estado de conservação, representando cinco episódios relativos à Paixão de Cristo: a Flagelação, a Coroação de Espinhos, o Caminho do Calvário e duas cenas relativas à Ressurreição. Apresenta uma iconografia singular, mas as suas características gerais indicam tratar-se de uma pintura tardo-gótica do Norte da Europa, nomeadamente da Alemanha. O objetivo desta tese de mestrado em História da Arte, Património e Teoria do Restauro, consiste na investigação histórica e material desta obra, sobre a qual existe pouca informação. Por ser desconhecida a sua cronologia, autoria e local de produção, além de não haver qualquer documentação ou bibliografia sobre a mesma, iremos estudar esta obra a partir da sua materialidade, iconografia e estilo, na medida em que a obra é um “documento vivo”. Tendo sido agora encontrada a única e a mais antiga referência documental relativa a esta obra, nos arrolamentos de 1913 do palácio (Inventário Judicial), este tríptico consta na "Galeria de Quadros”, indicando ter pertencido à coleção de pintura de D. Luís I. Interessa, então, focar a política de aquisições de pintura antiga nórdica desenvolvida pelo monarca, tentando perceber porque é que o tríptico não consta nos catálogos das exposições (duas edições dos catálogos, 1869 e 1872) da “Galeria de Pintura no Real Paço da Ajuda”, aberta ao público em1869. Porque a interdisciplinaridade entre arte e ciência é fundamental para um conhecimento mais profundo da História da Arte, esta obra foi objeto de um estudo material que consistiu no levantamento in situ da pintura (exames de área e de ponto), na análise laboratorial (estratigrafia, pigmentos e aglutinantes) e na integração dos resultados, para compreender a técnica pictórica, que se articula com a análise iconográfica e de filiação estilística, contribuindo para a integração da obra no seu contexto histórico-cultural de origem, como pintura devocional germânica.

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The Cacimbinha and Madeiro beaches are located in the eastern coast of Rio Grande do Norte state, in the municipality of Tibau do Sul. Given the indicative of erosion in the coast of this district and the coastal processes acting on the beaches, the global aim of this project is comprehend the evolution of depositional environment on the Cacimbinha beach, moreover, the project seeks to characterize deposits from the Cacimbinha and Madeiro beaches, according to the geomorphologic compartments identified on these beaches; distinguish the coastal features which possibly interact with the Cacimbinha beach; identify the potential relationship between the sediments from the coastal features and the deposits from Cacimbinha beach; understand which depositional processes that prevail at each facies deposited on the beach; and identify the probable sedimentary environments and its energy of deposition through of the materials recorded on the Cacimbinha beach. This study was based on previous bibliographic and field research, both guided by academic works, laws, concepts and theories concerning the physical geography, geomorphology of the quaternary, sedimentary geology and stratigraphy. Thus, the methodology was divided in three steps: Prefield step: office work was performed; Field step: Sampling of facies of sedimentation; PosField step: analysis and integration of data obtained during the research period. Thus, the results showed deposicional facies with distinguished energy in the relief compartments, beach and terrace. After the sedimentary analysis and its interpretation linked to the architecture of the mounted sections based on drilling, it became possible to trace the evolutionary history of this stretch of beach. Therefore, it can be stated that studies performed on coastal areas are of great importance, as long as, around the world, the most part of urban zones are seated on deposits of quaternary age and, then this work improve the knowledge regarding the sedimentary dynamics of this beach, becoming scientific support for management and planning of this area which focus on, mainly, the foreign tourism

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The Parnaíba Basin consists in an intracratonic basin whose sucession of rocks is arranged in five supersequences. The Upper Carboniferous-Lower Triassic Sequence represents the third major sedimentary cycle and corresponds to Balsas Group, which is divided into four units: Piauí Formation, Pedra de Fogo Formation, Motuca Formation and Sambaíba Formation, from base to top. Different interpretations have been made by several authors in recent decades to interpreted the depositional system and environments related to each unit that belongs to this sequence. In general way, it is described as a thick pack of siliciclastic sediments deposited under complex conditions, varying from clastic/evaporitic shallow marine to lacustrine and desert environment. Aiming to clarify the sedimentary sequence evolution, this work underwent a stratigraphic analysis of the Upper Carboniferous-Lower Triassic deposits by applying modern concepts of the sequence stratigraphy based on well and seismic database. Three main depositional sequences of higher frequency were identified in each well analyzed. The sequence 1 corresponds to rocks initially deposited by a fluvial system with braided channel characteristics which evolved to shallow marine with coastal sabkha conditions related to a transgressive stage, that later evolved to a deltaic system. The Sequence 2 corresponds to rocks deposited in a lacustrine/desert environment associated with sabkha generated during a period of increased aridity in which the area occupied by the Parnaíba Basin had been suffering. The registration of a major regressive phase is shown in Sequence 2 which evolved to a dominantly desert environment recorded in Sequence 3. Seismic stratigraphy analyses allow to define a series of stratigraphic surfaces and related genetic units, as well as to infer its lateral expression. Seismic facies associated with such sequences are dominantly parallel and sub-parallel, with good lateral continuity, suggesting the sedimentary rate was relatively constant during deposition.

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The Parnaíba Basin consists in an intracratonic basin whose sucession of rocks is arranged in five supersequences. The Upper Carboniferous-Lower Triassic Sequence represents the third major sedimentary cycle and corresponds to Balsas Group, which is divided into four units: Piauí Formation, Pedra de Fogo Formation, Motuca Formation and Sambaíba Formation, from base to top. Different interpretations have been made by several authors in recent decades to interpreted the depositional system and environments related to each unit that belongs to this sequence. In general way, it is described as a thick pack of siliciclastic sediments deposited under complex conditions, varying from clastic/evaporitic shallow marine to lacustrine and desert environment. Aiming to clarify the sedimentary sequence evolution, this work underwent a stratigraphic analysis of the Upper Carboniferous-Lower Triassic deposits by applying modern concepts of the sequence stratigraphy based on well and seismic database. Three main depositional sequences of higher frequency were identified in each well analyzed. The sequence 1 corresponds to rocks initially deposited by a fluvial system with braided channel characteristics which evolved to shallow marine with coastal sabkha conditions related to a transgressive stage, that later evolved to a deltaic system. The Sequence 2 corresponds to rocks deposited in a lacustrine/desert environment associated with sabkha generated during a period of increased aridity in which the area occupied by the Parnaíba Basin had been suffering. The registration of a major regressive phase is shown in Sequence 2 which evolved to a dominantly desert environment recorded in Sequence 3. Seismic stratigraphy analyses allow to define a series of stratigraphic surfaces and related genetic units, as well as to infer its lateral expression. Seismic facies associated with such sequences are dominantly parallel and sub-parallel, with good lateral continuity, suggesting the sedimentary rate was relatively constant during deposition.

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The Middle Devonian-Early Carboniferous sequence of the Parnaíba Basin, lithostratigraphically defined as Canindé Group, has been reinterpreted using the basic model of sequence stratigraphy. Therefore, lithology and gamma ray well-logs and seismic lines of central portion of the basin were analyzed, producing up from there diagrams 1D, isochore maps and stratigraphic sections. As results of this study, were defined two depositional cycles of second order, referred as Depositional Sequence 1 (SEQ1) and the Depositional Sequence 2 (SEQ2). The SEQ1, with interval about 37 Ma, is limited below by Early Devonian Unconformity and is equivalent to the formations Itaim, Pimenteiras and Cabeças. The SEQ2, which follows, comprises a range of about 15 Ma and is equivalent to the Longá Formation The SEQ1 starts with the lowstand systems tract, consisting of progradational parasequence set in the basal part, predominantly pelitic, deposited on a prodelta under influence of storms and the upper part consists in sandstones of deltaic front, with the maximum regressive surface on the upper limit. The transgressive systems tract, deposited above, is characterized by retrogradacional parasequence set composed of shallow shelf mudstones, deposited under storm conditions. The maximum flooding surface, upper limit of this tract, is positioned in a shale level whose radioactivity in gammaray well-log is close to 150 API. The highstand systems tract presents progradational parasequence set, comprising mudstones and sandstones deposited in shelf, fluvial-estuarine or deltaic and periglacial environments, with the upper limit the Late Devonian Unconformity. The SEQ2 was deposited in shelf environment, starting with the lowstand systems tract, that is characterized by a progradational parasequence set, followed by the transgressive systems tract, with retrogradational character. The upper limit of the tract corresponding to the fusion between maximum flooding surface with the upper limit of this sequence, which is the Early Carboniferous Unconformity, where the overlapping section was eroded. This section, which corresponds the highstand systems tract is restricted to portions at which the erosion that generate the Early-Carboniferous Unconformity was less effective, preserving the records of this unit.

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The Middle Devonian-Early Carboniferous sequence of the Parnaíba Basin, lithostratigraphically defined as Canindé Group, has been reinterpreted using the basic model of sequence stratigraphy. Therefore, lithology and gamma ray well-logs and seismic lines of central portion of the basin were analyzed, producing up from there diagrams 1D, isochore maps and stratigraphic sections. As results of this study, were defined two depositional cycles of second order, referred as Depositional Sequence 1 (SEQ1) and the Depositional Sequence 2 (SEQ2). The SEQ1, with interval about 37 Ma, is limited below by Early Devonian Unconformity and is equivalent to the formations Itaim, Pimenteiras and Cabeças. The SEQ2, which follows, comprises a range of about 15 Ma and is equivalent to the Longá Formation The SEQ1 starts with the lowstand systems tract, consisting of progradational parasequence set in the basal part, predominantly pelitic, deposited on a prodelta under influence of storms and the upper part consists in sandstones of deltaic front, with the maximum regressive surface on the upper limit. The transgressive systems tract, deposited above, is characterized by retrogradacional parasequence set composed of shallow shelf mudstones, deposited under storm conditions. The maximum flooding surface, upper limit of this tract, is positioned in a shale level whose radioactivity in gammaray well-log is close to 150 API. The highstand systems tract presents progradational parasequence set, comprising mudstones and sandstones deposited in shelf, fluvial-estuarine or deltaic and periglacial environments, with the upper limit the Late Devonian Unconformity. The SEQ2 was deposited in shelf environment, starting with the lowstand systems tract, that is characterized by a progradational parasequence set, followed by the transgressive systems tract, with retrogradational character. The upper limit of the tract corresponding to the fusion between maximum flooding surface with the upper limit of this sequence, which is the Early Carboniferous Unconformity, where the overlapping section was eroded. This section, which corresponds the highstand systems tract is restricted to portions at which the erosion that generate the Early-Carboniferous Unconformity was less effective, preserving the records of this unit.

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The Serra do Caramuru and Tapuio stocks, located in the extreme NE of Rio Piranhas-Seridó Domain (RN), are representative of the Ediacaran-Cambrian magmatism, an important magmatic feature of the Brasilian / Panafrican orogeny of the Borborema Province. These bodies are lithologically similar, intrusive in paleoproterozoic gneiss embasement, being separated by a thin belt of mylonitic orthogneiss. The field relations show a magmatic stratigraphy initiated by dioritic facies that coexists with the porphyritic granitic and equigranular granitic I facies, and less frequently with equigranular granitic II facies. These rocks are crosscut by late granitic dykes and sheets with NE-SW / NNE-SSW orientation. The dioritic facies (diorite, quartz diorite, quartz monzodiorites, tonalite and granodiorite) is leucocratic to melanocratic, rich in biotite and hornblende. The granitic facies are hololeucocratic to leucocratic, and have biotite ± hornblende. Petrographic and geochemical (whole rock) data, especially from Serra do Caramuru pluton, suggest fractionation of zircon, apatite, clinopyroxene (in diorites), opaque minerals, titanite, biotite, hornblende, allanite, plagioclase, microcline and garnet (in dykes). The behavior of trace elements such as Zr, La and Yb indicates that the dioritic magma does not constitute the parental magma for the granitic facies. On the other hand, the granitic facies seems to be cogenetic to each other, displaying differentiation trends and very similar rare earth elements (REE) spectra [12.3≤(La/Yb)N≤190.8; Eu/Eu*=0.30-0.68]. Field relationships and REE patterns [6.96≤(La/Yb)N≤277.8; Eu/Eu*=0.18-0.58] demonstrate that the granitic dykes and sheets are not cogenetically related to the Serra do Caramuru magmatism. The dioritic facies is metaluminous (A/CNK = 0.88-0.74) and shoshonitic, whereas the granitic ones are metaluminous to peraluminous (A/CNK = 1.08-0.93) and high potassium calc-alkaline. Dykes and sheets are strictly peraluminous (A/CNK = 1.01-1.04). Binary diagrams relating compatible and incompatible trace elements and microtextures indicate the fractional crystallization as the dominant mechanism of magmatic evolution of the various facies. The Serra do Caramuru and Tapuio stocks have well preserved magmatic fabric, do not show metamorphic minerals and are structurally isotropic, showing crosscutting contact with the ductile fabric of the basement. These observations lead to interpretate a stage of relative tectonic stability, consistent with the orogenic relaxation period of the Brasiliano / Pan-African orogeny. Chemical plots involving oxides and trace elements indicate late to post-collisional emplacement. In this context, the assumed better mechanism to describe the stocks emplacement within an extensional T Riedel joint, with ENE-WSW extensional vector. The U-Pb zircon age of 553 ± 10 Ma allows correlating the Serra do Caramuru magmatism to the group of post-collisional bodies, equigranular high potassium calc-alkaline granites of the NE of Rio Piranhas-Seridó Domain.

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The Serra do Caramuru and Tapuio stocks, located in the extreme NE of Rio Piranhas-Seridó Domain (RN), are representative of the Ediacaran-Cambrian magmatism, an important magmatic feature of the Brasilian / Panafrican orogeny of the Borborema Province. These bodies are lithologically similar, intrusive in paleoproterozoic gneiss embasement, being separated by a thin belt of mylonitic orthogneiss. The field relations show a magmatic stratigraphy initiated by dioritic facies that coexists with the porphyritic granitic and equigranular granitic I facies, and less frequently with equigranular granitic II facies. These rocks are crosscut by late granitic dykes and sheets with NE-SW / NNE-SSW orientation. The dioritic facies (diorite, quartz diorite, quartz monzodiorites, tonalite and granodiorite) is leucocratic to melanocratic, rich in biotite and hornblende. The granitic facies are hololeucocratic to leucocratic, and have biotite ± hornblende. Petrographic and geochemical (whole rock) data, especially from Serra do Caramuru pluton, suggest fractionation of zircon, apatite, clinopyroxene (in diorites), opaque minerals, titanite, biotite, hornblende, allanite, plagioclase, microcline and garnet (in dykes). The behavior of trace elements such as Zr, La and Yb indicates that the dioritic magma does not constitute the parental magma for the granitic facies. On the other hand, the granitic facies seems to be cogenetic to each other, displaying differentiation trends and very similar rare earth elements (REE) spectra [12.3≤(La/Yb)N≤190.8; Eu/Eu*=0.30-0.68]. Field relationships and REE patterns [6.96≤(La/Yb)N≤277.8; Eu/Eu*=0.18-0.58] demonstrate that the granitic dykes and sheets are not cogenetically related to the Serra do Caramuru magmatism. The dioritic facies is metaluminous (A/CNK = 0.88-0.74) and shoshonitic, whereas the granitic ones are metaluminous to peraluminous (A/CNK = 1.08-0.93) and high potassium calc-alkaline. Dykes and sheets are strictly peraluminous (A/CNK = 1.01-1.04). Binary diagrams relating compatible and incompatible trace elements and microtextures indicate the fractional crystallization as the dominant mechanism of magmatic evolution of the various facies. The Serra do Caramuru and Tapuio stocks have well preserved magmatic fabric, do not show metamorphic minerals and are structurally isotropic, showing crosscutting contact with the ductile fabric of the basement. These observations lead to interpretate a stage of relative tectonic stability, consistent with the orogenic relaxation period of the Brasiliano / Pan-African orogeny. Chemical plots involving oxides and trace elements indicate late to post-collisional emplacement. In this context, the assumed better mechanism to describe the stocks emplacement within an extensional T Riedel joint, with ENE-WSW extensional vector. The U-Pb zircon age of 553 ± 10 Ma allows correlating the Serra do Caramuru magmatism to the group of post-collisional bodies, equigranular high potassium calc-alkaline granites of the NE of Rio Piranhas-Seridó Domain.

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The Museu Geológico collections house some of the first sauropod references of the Lusitanian Basin Upper Jurassic record, including the Lourinhasaurus alenquerensis and Lusotitan atalaiensis lectotypes, previously considered as new species of the Apatosaurus and Brachiosaurus genera, respectively. Several fragmentary specimens have been classical referred to those taxa, but the most part of these systematic attributions are not supported herein, excluding a caudal vertebra from Maceira (MG 8804) considered as cf. Lusotitan atalaiensis. From the material housed in the Museu Geológico were identified basal eusauropods (indeterminate eusauropods and turiasaurs) and neosauropods (indeterminate neosauropods, diplodods and camarasaurids and basal titanosauriforms). Middle caudal vertebrae with lateral fossae, ventral hollow border by pronounced ventrolateral crests and quadrangular cross-section suggest for the presence of diplodocine diplodocids in north area of the Lusitanian Basin Central Sector during the Late Jurassic. A humerus collected from Praia dos Frades (MG 4976) is attributed to cf. Duriatitan humerocristatus suggesting the presence of shared sauropod forms between the Portugal and United Kingdom during the Late Jurassic. Duriatitan is an indeterminate member of Eusauropoda and the discovery of new material in both territories is necessary to confirm this systematic approach. The studied material is in according with the previous recorded paleobiodiversity for the sauropod clade during the Portuguese Late Jurassic, which includes basal eusauropods (including turiasaurs), diplodocids and macronarians (including camarasaurids and basal titanosauriforms).

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Publicações inserida na colecção Memórias Geológicas, nº 35

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A cartografia geológica da região Tomar-Sardoal-Ferreira do Zêzere permitiu individualizar sucessões tectono-estratigráficas em domíníos da Zona Centro-Ibérica (ZCI) e da Zona Ossa Morena (ZOM) que anteriormente eram considerados apenas como ZOM, separadas entre si pelo carreamento de Ortiga-Torrão. A sucessão centro-ibérica monometamórfica, datada do Neoproterozóico ao Silúrico (?), encontra-se numa estrutura triangular e é constituída por unidades típicas do Paleozóico/Neoproterozóico da ZCI. Na ZOM foram estabelecidas duas sucessões polimetamórficas nas regiões do Sardoal e de Serra (Tomar), ambas datadas no geral do Neoproterozóico. A primeira constitui um autóctone relativo e a outra, alóctone; ambas são compostas por unidades deformadas da crosta cadomiana. A continuidade das sucessões tectono-estratigráficas antecedentes do Terreno Ibérico e do carreamento que as limita é interrompida a E pela Zona de Cisalhamento Porto-Tomar-Ferreira do Alentejo (N-S e cinemática direita), a ocidente da qual se encontra o Terreno Finisterra.