910 resultados para Falhas (Geologia)


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Landscape is the result of interaction between tectonic, weathering and pedogenetic processes, so it is necessary to understand the morphogenesis and relate it to the landforms and landscape. Therefore, this project comprises a geomorphological characterization of some areas associated with the fault zones of Taubaté Basin, at the surroundings of the cities from São José dos Campos to Taubaté SP, emphasizing the Quaternary landscape evolution, where the normal faults played an important role in controling and they were originated, mostly, from the reactivation of Precambrian fault zones by tectonic action. The rift valley scenario is highlighted in the region, identifying the sharp relief from the basin boundary, featuring both Serra do Mar and Serra da Mantiqueira, and a central depressed area where the Taubaté Basin is located. Deforming or modifying basin features are identified, promoting the rearrangement and conditioning of the drainage network and relief, which indicates the presence of morphostructures, conducting to the deduction of a late tectonic process

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Os ungulados viventes (Cetartiodactyla e Perissodactyla), nas regiões estudadas, são representados por 11 gêneros e 24 espécies. O presente estudo propõe reconhecer os padrões de distribuição destas espécies, a partir da aplicação do método pan-biogeográfico de análise de traços. Este método auxilia no entendimento a priori dos padrões congruentes de distribuição e numa compreensão de padrões e processos de diferenciação geográfica no tempo e no espaço, reconstruindo a biogeografia de táxons. Em relação a aspectos conservacionistas, o método foi aplicado na identificação de áreas prioritárias para conservação. A aplicação do método consiste basicamente na marcação das localidades de ocorrência dos diferentes táxons em mapas, sendo estas localidades conectadas por intermédio de linhas seguindo um critério de mínima distância, resultando nos chamados traços individuais que foram plotados nos mapas de biomas da América Central e do Sul do programa ArcView GIS 3.2. A superposição destes traços individuais define um traço generalizado, sugerindo uma história comum, ou seja, a preexistência de uma biota ancestral subsequentemente fragmentada por eventos vicariantes. A interseção de dois ou mais traços generalizados corresponde a um nó biogeográfico, que representa áreas compostas e complexas, nas quais se agrupam distintas histórias biogeográficas. Para a análise pan-biogeográfica foi utilizado o software ArcView GIS 3.2 e a extensão Trazos 2004. A partir da superposição dos 24 traços individuais, foram reconhecidos cinco traços generalizados (TGs): TG1, Mesoamericano/Chocó, composto por Mazama pandora, M. temama e Tapirus bairdii; TG2, Andes do Norte (Mazama rufina, Pudu mephistophiles e Tapirus pinchaque); TG 3, Andes Centrais (Hippocamelus antisensis, Lama guanicoe, Mazama chunyi e Vicugna vicugna) ; TG4, Patagônia chilena (Hippocamelus bisulcus e Pudu puda).; TG5, Chaco/Centro oeste do Brasil (Blastocerus dichotomus, Catagonus wagneri e Ozotocerus bezoarticus); e um nó biogeográfico em Antioquia no noroeste da Colômbia. As espécies Mazama americana, M.bricenii, M.goazoubira, M.nana, Tapirus terrestris, Tayassu pecari e T. tajacu não participaram de nenhum dos traços generalizados. Os padrões de distribuição formados a partir dos traços generalizados indicam que os ungulados viventes sofreram uma fragmentação e diferenciação no Pleistoceno, relacionadas a eventos históricos ocorridos na região Neotropical, na Zona de Transição Sul-americana e na região Andina, explicados pelos movimentos ocorridos nas Zonas de Falhas Tectônicas da América Central e do Sul, por vulcanismo e pelas mudanças climáticas. A formação do platô Altiplano-Puna revelou ser uma barreira geográfica, tanto em tempos pretéritos como em tempos atuais, para a maioria da biota sul-americana, com exceção dos camelídeos, que habitam estas áreas da Argentina, do oeste da Bolívia e sudoeste do Peru. O nó biogeográfico confirmou a presença de componentes bióticos de diferentes origens, constituindo uma área com grande diversidade biológica e endêmica, sugerindo assim uma unidade de conservação no noroeste da América do Sul.

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Pós-graduação em Geociências e Meio Ambiente - IGCE

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This work presents structural studies in the northwestern portion of the Pitanga Structural High, between the towns of Ipeúna and Charqueada. The area is composed by the sedimentary rocks from Paraná Basin, represented basically by Paleozoic rocks (Itararé Group, Tatuí, Irati and Corumbataí formations) and Mesozoics rocks (Pirambóia and Botucatu formations), in association with lower Cretaceous intrusive basic rocks expressed by dikes and sills. The most important structural features are distensive faults, which put together unleveled tectonic blocks and are frequently filled by diabase dikes. In this context, the main objective of this work is the study of local structures and the recognition of the tectonic association between dropped and uplifted blocks, jointly with the caracterization of a production, migration and storage model for hydrocarbons. Through the interpretation of aerial photos, field recognitions, structural and laboratorial analysis, a normal fault with direction of N30W and a slip of 20-25 meters located south of Ipeúna was recognized this fault puts the Tatuí and Irati Formations side by side. At this place and by the SP-191 route (north of Ipeúna city), sandstones from the top of Tatuí Formation are impregnated by asfaltic material. The data interpretation shows that local fault systems with NW directions have played a determinant part in the fault blocks arrangement, placing sandstone lenses from Tatuí Formation topographically above the oil shales from Irati Formation. In addition, these systems acted as migration paths to transport and storage hydrocarbon in sanstone lenses from Tatuí Formation

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The area where the study was conducted is located in the central-western state of Goias. It geologically inserts the northern portion of the Greenstone Belt of Faina which belongs to the Archean terranes that fits in Brasília Fold Belt and Tocantins Structural Province. This region is known for its greenstone lode gold potential and it was heavily exploited by pioneers and prospectors, leaving many records for where they have been through. Preliminary work done by Orinoco Brasil Mineração in their required areas at the region showed that the environment is promising for gold mineralization and that the ore is controlled by structures. Therefore the objectives of this work were the geological and structural mapping in semi detail scale to improve geological, stratigraphic and structural controls present attributing possible ore understanding. With the development of the work there were recognized on the desktop three structural domains separated by a thrust fault. For each domain were discriminated the geological units ranging in gneisses, quartzites formed from coarse sediments arcoseanos, and schists. By mapping structures there were found five deformation phases, Dn-2, Dn-1, the Dn event that generated the main foliation (Sn) in high representation and two post-stages Dn with brittle late manifestations. The detail mapping of the Rattlesnake Gallery showed that the mineralized quartz vein is consistent with axial-plane foliation Sn-2 belonging to the oldest deformation Dn-2 phase and that the high grade is distributed in the hinge region folds of the same phase

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The Vazante Fault Zone (VFZ), located northwestward of Minas Gerais, host the largest zinc deposit known in the Brazilian territory. This structure is hosted in Vazante’s Group rocks, a metassedimentary sequence of marine environment. Near Vazante is situated the south end of the VFZ. To the west, occur the Serra do Garrote inflexion, characterized by a curvature in the contact of Formations Serra do Garrote and Serra do Poço Verde. This structure is through the analysis of aerial imagery of the region and represented in the published geological maps. The objective of this work is to understand what causes this inflexion and determine whether it affects the VZF, causing a shift in the same, and possibly, in the mineralization as well. To this end, it was done a mapping work in the region covering the Serra do Garrote inflexion and the south end of the VFZ, in 1:25.000 scale, supplemented by petrographic description of thin section and geologic sections, with cooperated to the understanding of the structural evolution of the region. Data analysis allowed the identification of six deformation phases. The D1 an D2 phases generated the main foliation. The D3 phase generate kink bands folds, with NS axis and vertical axial plane. The fourth phase is responsible for generating the Vazante Fault Zone. The fifth phase produces low angle folds and shear zones, subparallel to S1//S2. The last phase generates folds with NW axis and vertical axial plane, with causes the inflection of lithologic contactas. Field observations also make possible the conclusion that the Vazante Fault Zone presents a south continuation, which is affected by deformation associated to D6 phase attributing to the trace of the VFZ a curved geometry, similar to that exhibited by lithologic contacts between units of the map

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Nesta tese da especialidade de Hidrogeologia, é apresentado um primeiro levantamento vulcano-estratigráfico da ilha da Madeira. Os trabalhos de campo permitiram definir, até agora, sete unidades geológicas principais, descritas da mais antiga para a mais recente: 1- Complexo Vulcânico Antigo (CA) 2- Calcários Marinhos dos Lameiros - S. Vicente (CM) 3- Depósito Conglomerático-Brechóide (CB) 4- Complexo Vulcânico Principal (CP) 5- Complexo Vulcânico S. Roque/Paul (SRP) 6- Episódios Vulcânicos Recentes (VR) 7- Depósitos de Vertente (dv), Fajãs (fj), Quebradas (q), Depósitos de Enxurrada Recentes (dr), Areias de Praia (ap), Dunas Fósseis (df), Terraços (t), e Aluviões (a) A caracterização climática da ilha da Madeira foi feita com base nos dados recolhidos em 27 pontos de observação climatológicos, dos quais 14 são estações meteorológicas e 13 são postos udométricos, o que representa uma densidade de 1 ponto de observação/27 km2. Constatou-se que a variação da precipitação com a altitude não era linear e dependia da orientação das vertentes. Efectuou-se o balanço hídrico sequencial diário, com base nos valores de precipitação média diária, registados no Paul da Serra, durante os últimos 15 anos hidrológicos. Pretendeu-se quantificar a precipitação oculta na vegetação típica da ilha da Madeira, de modo a poder avaliar a contribuição daquele tipo de precipitação para os recursos hídricos subterrâneos, e, ainda, determinar qual o potencial daquele recurso natural, como contribuição importante às fontes tradicionais de abastecimento de água à ilha. Para o efeito, procedemos a dois tipos principais de medição: medição directamente sob a vegetação de altitude da Madeira, o urzal, que se desenvolve entre os 1200 e os 1600 m de altitude, e construção de aparelhos constituídos por obstáculos artificiais, de modo a interceptarem as gotículas de água contidas no nevoeiro. Pela sua importância, os resultados obtidos justificam o desenvolvimento futuro deste estudo. A caracterização hidrodinâmica das formações da ilha da Madeira baseou-se nas observações feitas no interior das galerias e túneis em escavação, na análise dos registos de caudais de galerias e nascentes e na interpretação de ensaios de bombeamento dos furos de captação. Os dados evidenciam a grande heterogeneidade e anisotropia características do meio vulcânico. As transmissividades vão desde 11 m2/d até 25 766 m2/d. A caracterização hidrogeoquímica permitiu identificar um grupo de 5 águas termais, emergentes em falhas, no Complexo Antigo, com características muito próprias, bastante distintas das restantes, que representam, quer em quantidade, quer em volume de caudais captados, a grande maioria das águas da ilha da Madeira. O principal fenómeno mineralizador das águas é a hidrólise de minerais silicatados, verificando-se, nas águas dos furos, nas das nascentes de altitude e nas situadas próximo do litoral, o efeito da contaminação de sais de origem marinha. A partir dos dados hidrogeológicos obtidos, foi possível elaborar um modelo conceptual de funcionamento hidrogeológico para a ilha da Madeira, que, apesar de possuir alguns elementos comuns, é, no seu conjunto, diferente dos modelos conhecidos para outras ilhas vulcânicas, nomeadamente, Canárias, Reunião, Havai e Polinésia Francesa.

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The area studied forms a thin NNE-directed belt situated south of Recife town (Pernambuco state), northeastern Brazil. Geologically, it comprises the Pernambuco Basin (PB), which is limited by the Pernambuco Lineament to the north, the Maragogi high to the south and the Pernambuco Alagoas massif to the west, all of them with Precambrian age. This thesis reports the results obtained for the Cabo Magmatic Province (CMP), aiming the characterization of the geology, stratigraphy, geochronology, geochemistry and petrogenesis of the Cretaceous igneous rocks presented in the PB. The PB is composed of the Cabo Formation (rift phase) at the base (polymictic conglomerates, sandstones, shales), an intermediate unit, the Estiva Formation (marbles and argillites), and, at the top, the Algodoais Formation (monomictic conglomerates, sandstones, shales). The CMP is represented by trachytes, rhyolites, pyroclastics (ignimbrites), basalts / trachy-andesites, monzonites and alkali-feldspar granite, which occur as dykes, flows, sills, laccoliths and plugs. Field observations and well descriptions show that the majority of the magmatic rocks have intrusive contacts with the Cabo Formation, although some occurrences are also suggestive of synchronism between volcanism and siliciclastic sedimentation. 40Ar/39Ar and zircon fission tracks for the magmatic rocks indicate an average age of 102 r 1 Ma for the CMP. This age represents an expressive event in the province and is detected in all igneous dated materials. It is considered as a minimum age (Albian) for the magmatic episode and the peak of the rift phase in the PB. The 40Ar/39Ar dates are about 10-14 Ma younger than published palynologic ages for this basin. Geochemically, the CMP may be divided in two major groups; i) a transitional to alkaline suite, constituted by basalts to trachy-andesites (types with fine-grained textures and phenocrysts of sanidine and plagioclase), trachytes (porphyrytic texture, with phenocrysts of sanidine and plagioclase) and monzonites; ii) a alkaline suite, highly fractionated, acidic volcano-plutonic association, formed by four subtypes (pyroclastic flows ignimbrites, fine-to medium-grained rhyolites, a high level granite, and later rhyolites). These four types are distinguished essentially by field aspects and petrographic and textural features. Compatible versus incompatible trace element concentrations and geochemical modeling based on both major and trace elements suggest the evolution through low pressure fractional crystallization for trachytes and other acidic rocks, whereas basalts / trachy-andesites and monzonites evolved by partial melting from a mantle source. Sr and Nd isotopes reveal two distinct sources for the rocks of the CMP. Concerning the acidic ones, the high initial Sr ratios (ISr = 0.7064-1.2295) and the negative HNd (-0.43 to -3.67) indicate a crustal source with mesoproterozoic model ages (TDM from 0.92 to 1.04 Ga). On the other hand, the basic to intermediate rocks have low ISr (0.7031-0.7042) and positive HNd (+1.28 to +1.98), which requires the depleted mantle as the most probable source; their model ages are in the range 0.61-0.66 Ga. However, the light rare earth enrichment of these rocks and partial melting modeling point to an incompatible-enriched lherzolitic mantle with very low quantity of garnet (1-3%). This apparent difference between geochemical and Nd isotopes may be resolved by assuming that the metasomatizing agent did not obliterate the original isotopic characteristics of the magmas. A 2 to 5% partial melting of this mantle at approximately 14 kbar and 1269oC account very well the basalts and trachy-andesites studied. By using these pressure and temperatures estimates for the generation of the basaltic to trachy-andesitic magma, it is determined a lithospheric stretching (E) of 2.5. This E value is an appropriated estimate for the sub-crustal stretching (astenospheric or the base of the lithosphere?) region under the Pernambuco Basin, the crustal stretching probably being lower. The integration of all data obtained in this thesis permits to interpret the magmatic evolution of the PB as follows; 1st) the partial melting of a garnet-bearing lherzolite generates incompatible-enriched basaltic, trachy-andesitic and monzonitic magmas; 2nd) the underplating of these basaltic magmas at the base of the continental crust triggers the partial melting of this crust, and thus originating the acidic magmas; 3rd) concomitantly with the previous stage, trachytic magmas were produced by fractionation from a monzonitic to trachy-andesitic liquid; 4th) the emplacement of the several magmas in superficial (e.g. flows) or sub-superficial (e.g. dykes, sills, domes, laccoliths) depths was almost synchronically, at about 102 r 1 Ma, and usually crosscutting the sedimentary rocks of the Cabo Formation. The presence of garnet in the lherzolitic mantle does not agree with pressures of about 14 kbar for the generation of the basaltic magma, as calculated based on chemical parameters. This can be resolved by admitting the astenospheric uplifting under the rift, which would place deep and hot material (mantle plume?) at sub-crustal depths. The generation of the magmas and their subsequent emplacement would be coupled with the crustal rifting of the PB, the border (NNE-SSW directed) and transfer (NW-SE directed) faults serving as conduits for the magma emplacement. Based on the E parameter and the integration of 40Ar/39Ar and palynologic data it is interpreted a maximum duration of 10-14 Ma for the rift phase (Cabo Formation clastic sedimentation and basic to acidic magmatism) of the PB

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

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A research project is being developed by PPGG/UFRN and PETROBRAS in the Xaréu Oil Field located in Ceará Basin, Northeastern Brazil. The objective of the research is to characterize a fractured carbonate reservoir, the Trairi Limestone, in order to drill a borehole with two horizontal legs taking advantage of the natural fracture system to enhance the oil recovery. The present master thesis is part of this research and its contribution is to estimate fault orientation from unoriented cores, using the method proposed by Hesthammer & Henden (2000). In order to orient a fault cutting a bed observed in the core, the bed should be previously oriented. As additional constraint to orient the bed, we use regional bedding orientation obtained from structure maps of Trairi Limestone. Because the number of cores drilled from the Trairi Limestone was too small, we analyzed all cores from the field. As geologic constraint, we admit that all faults were formed as result of the South America and Africa separation, in the context of a regional dextral strike-slip fault formation. In this context, secondary faults are manly T and R faults according Riedel s classification. We analyzed 236.5 m of cores. The dip of bedding varies from 0o to 8o, being the most frequent value equal to 2o. We interpret this result as evidence that the deformation process was manly ruptil. 77 faults were identified in the cores. These faults strike manly to NW and NE with dips, in general, inside the interval 700 - 900. We suggest that the horizontal legs of the borehole should be oriented to NW and NE in order to improve the probability of intercepting open fractures and faults

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The geological modeling allows, at laboratory scaling, the simulation of the geometric and kinematic evolution of geological structures. The importance of the knowledge of these structures grows when we consider their role in the creation of traps or conduits to oil and water. In the present work we simulated the formation of folds and faults in extensional environment, through physical and numerical modeling, using a sandbox apparatus and MOVE2010 software. The physical modeling of structures developed in the hangingwall of a listric fault, showed the formation of active and inactive axial zones. In consonance with the literature, we verified the formation of a rollover between these two axial zones. The crestal collapse of the anticline formed grabens, limited by secondary faults, perpendicular to the extension, with a curvilinear aspect. Adjacent to these faults we registered the formation of transversal folds, parallel to the extension, characterized by a syncline in the fault hangingwall. We also observed drag folds near the faults surfaces, these faults are parallel to the fault surface and presented an anticline in the footwall and a syncline hangingwall. To observe the influence of geometrical variations (dip and width) in the flat of a flat-ramp fault, we made two experimental series, being the first with the flat varying in dip and width and the second maintaining the flat variation in width but horizontal. These experiments developed secondary faults, perpendicular to the extension, that were grouped in three sets: i) antithetic faults with a curvilinear geometry and synthetic faults, with a more rectilinear geometry, both nucleated in the base of sedimentary pile. The normal antithetic faults can rotate, during the extension, presenting a pseudo-inverse kinematics. ii) Faults nucleated at the top of the sedimentary pile. The propagation of these faults is made through coalescence of segments, originating, sometimes, the formation of relay ramps. iii) Reverse faults, are nucleated in the flat-ramp interface. Comparing the two models we verified that the dip of the flat favors a differentiated nucleation of the faults at the two extremities of the mater fault. V These two flat-ramp models also generated an anticline-syncline pair, drag and transversal folds. The anticline was formed above the flat being sub-parallel to the master fault plane, while the syncline was formed in more distal areas of the fault. Due the geometrical variation of these two folds we can define three structural domains. Using the physical experiments as a template, we also made numerical modeling experiments, with flat-ramp faults presenting variation in the flat. Secondary antithetic, synthetic and reverse faults were generated in both models. The numerical modeling formed two folds, and anticline above the flat and a syncline further away of the master fault. The geometric variation of these two folds allowed the definition of three structural domains parallel to the extension. These data reinforce the physical models. The comparisons between natural data of a flat-ramp fault in the Potiguar basin with the data of physical and numerical simulations, showed that, in both cases, the variation of the geometry of the flat produces, variation in the hangingwall geometry