991 resultados para Fácies de margem de rift
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This work presents a study of selected outcrops from the Pedra das Torrinhas Formation of the Guaritas Group (Cambrian, Camaquã Basin), near the basin bordering Encantadas Fault Zone. The studied succession includes alluvial fan deposits that pass laterally into eolian deposits. Sedimentary facies and architectural element analysis were performed, followed by sedimentary petrography and microscopic porosity analysis, aiming to characterize the porosity of the deposits and its spatial distribution. The main objective was to contribute to a better understanding of the porosity spatial distribution in depositional systems characterized by the interaction between alluvial and eolian processes, with special reference to deposits formed prior to the development of terrestrial plants. Porosity values are related to depositional processes, with higher porosities associated to eolian dune deposits (mean of 8.4%), and lower porosity related to interdunes (mean of 3.4%) and alluvial fans (mean of 4.3%). Architectural elements analysis revealed the spatial relationships of these deposits, a response to the interplay of the eolian and alluvial processes. The integration of porosity data reveals that the interaction of alluvial and eolian processes results in heterogeneous distribution of porosity at the facies association scale. Eolian reworking of alluvial facies increases porosity whereas sheet-flood and other alluvial processes in the interdune areas reduce porosity.
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A evolução da Bacia Lusitaniana, localizada na margem ocidental ibérica, está intimamente associada às primeiras fases de abertura do Atlântico Norte. Perdurou desde o Triásico superior até o Cretácico inferior, mais exactamente até o topo do Aptiano inferior, e desenvolveu-se condicionada por estruturas herdadas do soco varisco. É discutido o papel desempenhado pelas falhas que constituem os seus limites, no que respeita a evolução geométrica e cinemática e a organização dos corpos sedimentares. O mesmo é efectuado relativamente a importantes falhas transversais à bacia. É proposto modelo de evolução da bacia ao longo de quatro episódios de rifting que mostram: i) períodos de simetria (organização em horsts e grabens) e assimetria (organização em half graben) na sua evolução geométrica; ii) diacronismo na fracturação; iii) rotação da direcção de extensão principal; iv) enraizamento no soco varisco das principais falhas da bacia (estilo predominantemente thick skinned). A análise e comparação regional, nomeadamente com a bacia do Algarve, de intervalos temporais representados por importantes hiatos à escala da bacia, próximos da renovação dos episódios de rifting, permitiram concluir sobre a ocorrência de inversões tectónicas precoces (Caloviano-Oxfordiano e Titoniano-Berriasiano). A última, no entanto, teve evolução subsequente diferente da primeira: não se verifica renovação da subsidência, que se discute, e relaciona-se com evento magmático. Embora a Bacia Lusitaniana se encontre numa margem de rift que se considera como não-vulcânica, os três ciclosmagmáticos definidos por vários autores, em especial o segundo (apr. 130 a 110 M.a. ?), desempenhou papel fundamental na mobilização dos evaporitos do Hetangiano, que resultou no intervalo principal de diapirismo na Bacia Lusitaniana. É discutida a forma e o momento em que a bacia aborta definitivamente (Aptiano inferior). São estabelecidas comparações com outras bacias da margem ocidental ibérica e da Terra Nova e proposto modelo de oceanização deste troço do Atlântico Norte, em dois momentos, separados por intervalo de cerca de 10 M.a. e em áreas distintas, separadas pela falha da Nazaré. Esta síntese foi elaborada com base: - na informação dada por um conjunto de trabalhos já publicados (1990-2000), - nos trabalhos de campo efectuados nos últimos anos e cujos resultados não foram ainda publicados, - na reunião de informação proveniente da reinterpretação de elementos de cartografia geológica e de geofísica (sísmica e sondagens) e de outros de bibliografia geral sobre o Mesozóico da margem ocidental ibérica.
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A seção rift das bacias brasileiras representa o registro associado à quebra do Gondwana e conseqüente separação entre o Brasil e a África, gerando os mais importantes sistemas petrolíferos do país. Porém, a seção rift nas bacias marginais brasileiras não é adequadamente conhecida em termos estratigráficos, e isto se deve claramente a carência de modelos conceituais cientificamente estabilizados acerca da evolução estratigráfica de bacias rift. A maioria dos estudos estratigráficos ainda aborda as seções rift sob o enfoque puramente litoestratigráfico, raros trabalhos desenvolveram uma análise estratigráfica sob uma óptica genética, utilizando a estratigrafia de seqüências. Isto acontece em parte porque os conceitos da estratigrafia de seqüências clássica são baseados em um controle eustático, em bacias do tipo margem passiva; esta abordagem não funciona se aplicada em bacias rift, pois estas possuem uma geometria muito diferente das bacias de margem passiva e, principalmente, bacias rift são controladas pela tectônica e possuem uma geometria bem diferente das bacias de margem passiva. Assim, com a integração dos conceitos e teorias evolutivas de bacias rift apresentados na literatura, foi desenvolvido um modelo evolutivo conceitual onde um pulso tectônico, relativamente rápido no tempo geológico, gera no sistema geométrico básico de uma bacia rift, o sistema de meiograben, um soerguimento e uma subsidência contemporâneos, resultando assim, em eventos erosivos correlatos a pacotes sedimentares. Em termos de padrões de sedimentação, observou-se também, que existe um atraso na chegada do pulso sedimentar em resposta ao pulso tectônico gerador, fazendo com que os eventos tectonicamente mais ativos do rift sejam caracterizados pela deposição de folhelhos, e sucedidos por sedimentos grossos. A aplicação destes conceitos na Bacia de Camamu-Almada (costa central da Bahia, margem leste brasileira), que possui as fases pré-rift, sin-rift e pós-rift preservadas, possibilitou uma maior compreensão da evolução estratigráfica da fase rift. Foram caracterizadas fácies, determinados os sistemas deposicionais, identificados padrões de empilhamento e delimitadas seqüências deposicionais e suas discordâncias limitantes. Assim, foi possível estabelecer modelos evolutivos sedimentológicos e paleogeográficos, que são fundamentais para a localização espacial (e temporal) dos possíveis folhelhos geradores e dos potenciais arenitos reservatórios. Por fim, pioneiramente, foi aplicado o modelo de Tratos Tectônicos, onde os tratos geométricos são identificados e relacionados a determinadas fases tectônicas da evolução da bacia rift, fornecendo assim, na obra completa, importantes avanços e fundamentais informações para o sistema petrolífero e geologia do petróleo da Bacia de Camamu-Almada, os quais também podem ser utilizados como base para avanços tecnológicos e científicos em outras bacias do tipo rift.
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A wedge facies cycle it‟s a body of sedimentary rock, bounded above and below by unconformity and which represents a transgressive-regressive cycle of deposition. This cycle is formed by the following succession of facies: non-marine (N), transitional-coarse texture, and marine-fine texture; The objective of this study have been members of the sandstones and Triumph Siderópolis, seconded by rare calcareous sandstones and very thin limb Paraguaçu. Through analysis of facies in wells testified by CPRM, it was possible to group on facies successions and set the standard stacking. The Triunfo Member consists of three cycles of facies, lithology whose standard indicates a vertical arrangement ''type'' tuning up, other words, a component sandy bottom in the form of '' box'', followed by components sandy-clayey and clayey-carbonaceous (1st and 2nd cycle) and / or shale and limestone (3rd cycle), represented by the base member Paraguaçu. The first cycle only occurs on NF-5 wells and NF-6 in the form of Onlap channel dug in post-Itararé group. The cycle II also reaches wells NF-4 and NF-3 to the north, while the cycle III reaches the southern area, well NF-9. The member Paraguaçu, well PP-25 is predominantly clay-síltico, also stand out limestones and sandstones. The limestones are not coastal marine organisms probably connected with the algae and cyanobacteria, the sandstones are fine-textured, very thin and coastal deposition environment. The member Siderópolis, well NF-2 consists of a sandstone fluvial-estuarine deployed in the valley section, and succeeded by sandstones and siltstones bioturbed, they have linked the transgression of the Fm. Palermo
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Dissertação apresentada para obtenção do grau de Doutor em Geotecnia, especialidade de Geologia de Engenharia, pela Universidade Nova de Lisboa
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The Borborema Province (BP) is a geologic domain located in Northeastern Brazil. The BP is limited at the south by the São Francisco craton, at the west by the Parnaíba basin, and both at the north and east by coastal sedimentary basins. Nonetheless the BP surface geology is well known, several key aspects of its evolution are still open, notably: i)its tectonic compartmentalization established after the Brasiliano orogenesis, ii) the architecture of its cretaceous continental margin, iii) the elastic properties of its lithosphere, and iv) the causes of magmatism and uplifting which occurred in the Cenozoic. In this thesis, a regional coverage of geophysical data (elevation, gravity, magnetic, geoid height, and surface wave global tomography) were integrated with surface geologic information aiming to attain a better understanding of the above questions. In the Riacho do Pontal belt and in the western sector of the Sergipano belt, the neoproterozoic suture of the collision of the Sul domain of the BP with the Sanfranciscana plate (SFP) is correlated with an expressive dipolar gravity anomaly. The positive lobule of this anomaly is due to the BP lower continental crust uplifting whilst the negative lobule is due to the supracrustal nappes overthrusting the SFP. In the eastern sector of the Sergipano belt, this dipolar gravity anomaly does not exist. However the suture still can be identified at the southern sector of the Marancó complex arc, alongside of the Porto da Folha shear zone, where the SFP N-S geophysical alignments are truncated. The boundary associated to the collision of the Ceará domain of the BP with the West African craton is also correlated with a dipolar gravity anomaly. The positive lobule of this anomaly coincides with the Sobral-Pedro II shear zone whilst the negative lobule is associated with the Santa Quitéria magmatic arc. Judging by their geophysical signatures, the major BP internal boundaries are: i)the western sector of the Pernambuco shear zone and the eastern continuation of this shear zone as the Congo shear zone, ii) the Patos shear zone, and iii) the Jaguaribe shear zone and its southwestern continuation as the Tatajuba shear zone. These boundaries divide the BP in five tectonic domains in the geophysical criteria: Sul, Transversal, Rio Grande do Norte, Ceará, and Médio Coreaú. The Sul domain is characterized by geophysical signatures associated with the BP and SFP collision. The fact that Congo shear zone is now proposed as part of the Transversal domain boundary implies an important change in the original definition of this domain. The Rio Grande do Norte domain presents a highly magnetized crust resulted from the superposition of precambrian and phanerozoic events. The Ceará domain is divided by the Senador Pompeu shear zone in two subdomains: the eastern one corresponds to the Orós-Jaguaribe belt and the western one to the Ceará-Central subdomain. The latter subdomain exhibits a positive ENE-W SW gravity anomaly which was associated to a crustal discontinuity. This discontinuity would have acted as a rampart against to the N-S Brasiliano orogenic nappes. The Médio Coreaú domain also presents a dipolar gravity anomaly. Its positive lobule is due to granulitic rocks whereas the negative one is caused by supracrustal rocks. The boundary between Médio Coreaú and Ceará domains can be traced below the Parnaíba basin sediments by its geophysical signature. The joint analysis of free air anomalies, free air admittances, and effective elastic thickness estimates (Te) revealed that the Brazilian East and Equatorial continental margins have quite different elastic properties. In the first one 10 km < Te < 20 km whereas in the second one Te ≤ 10 km. The weakness of the Equatorial margin lithosphere was caused by the cenozoic magmatism. The BP continental margin presents segmentations; some of them have inheritance from precambrian structures and domains. The segmentations conform markedly with some sedimentary basin features which are below described from south to north. The limit between Sergipe and Alagoas subbasins coincides with the suture between BP and SFP. Te estimates indicates concordantly that in Sergipe subbasin Te is around 20 km while Alagoas subbasin has Te around 10 km, thus revealing that the lithosphere in the Sergipe subbasin has a greater rigidity than the lithosphere in the Alagoas subbasin. Additionally inside the crust beneath Sergipe subbasin occurs a very dense body (underplating or crustal heritage?) which is not present in the crust beneath Alagoas subbasin. The continental margin of the Pernambuco basin (15 < Te < 25 km) presents a very distinct free air edge effect displaying two anomalies. This fact indicates the existence in the Pernambuco plateau of a relatively thick crust. In the Paraíba basin the free air edge effect is quite uniform, Te ≈ 15 km, and the lower crust is abnormally dense probably due to its alteration by a magmatic underplating in the Cenozoic. The Potiguar basin segmentation in three parts was corroborated by the Te estimates: in the Potiguar rift Te ≅ 5 km, in the Aracati platform Te ≅ 25 km, and in the Touros platform Te ≅ 10 km. The observed weakness of the lithosphere in the Potiguar rift segment is due to the high heat flux while the relatively high strength of the lithosphere in the Touros platform may be due to the existence of an archaean crust. The Ceará basin, in the region of Mundaú and Icaraí subbasins, presents a quite uniform free air edge effect and Te ranges from 10 to 15 km. The analysis of the Bouguer admittance revealed that isostasy in BP can be explained with an isostatic model where combined surface and buried loadings are present. The estimated ratio of the buried loading relative to the surface loading is equal to 15. In addition, the lower crust in BP is abnormally dense. These affirmations are particularly adequate to the northern portion of BP where adherence of the observed data to the isostatic model is quite good. Using the same above described isostatic model to calculate the coherence function, it was obtained that a single Te estimate for the entire BP must be lower than 60 km; in addition, the BP north portion has Te around 20 km. Using the conventional elastic flexural model to isostasy, an inversion of crust thickness was performed. It was identified two regions in BP where the crust is thickened: one below the Borborema plateau (associated to an uplifting in the Cenozoic) and the other one in the Ceará domain beneath the Santa Quitéria magmatic arc (a residue associated to the Brasiliano orogenesis). On the other hand, along the Cariri-Potiguar trend, the crust is thinned due to an aborted rifting in the Cretaceous. Based on the interpretation of free air anomalies, it was inferred the existence of a large magmatism in the oceanic crust surrounding the BP, in contrast with the incipient magmatism in the continent as shown by surface geology. In BP a quite important positive geoid anomaly exists. This anomaly is spatially correlated with the Borborema plateau and the Macaú-Queimadas volcanic lineament. The integrated interpretation of geoid height anomaly data, global shear velocity model, and geologic data allow to propose that and Edge Driven Convection (EDC) may have caused the Cenozoic magmatism. The EDC is an instability that presumably occurs at the boundary between thick stable lithosphere and oceanic thin lithosphere. In the BP lithosphere, the EDC mechanism would have dragged the cold lithospheric mantle into the hot asthenospheric mantle thus causing a positive density contrast that would have generated the main component of the geoid height anomaly. In addition, the compatibility of the gravity data with the isostatic model, where combined surface and buried loadings are present, together with the temporal correlation between the Cenozoic magmatism and the Borborema plateau uplifting allow to propose that this uplifting would have been caused by the buoyancy effect of a crustal root generated by a magmatic underplating in the Cenozoic
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This thesis deals with the sedimentological/stratigraphic and structural evolution of the sedimentary rocks that occur in the NW continental border of the Potiguar Basin. These rocks are well exposed along coastal cliffs between the localities of Lagoa do Mato and Icapuí, Ceará State (NE Brazil). The sedimentological/stratigraphic study involved, at the outcrop scale, detailed facies descriptions, profile mapping of the vertical succession of different beds, and columnar sections displaying inferred lateral relationships. The approach was complemented by granulometric and petrographic analyses, including the characterization of heavy mineral assemblages. The data set allowed to recognize two kinds of lithological units, a carbonate one of very restricted occurrence at the base of the cliffs, and three younger, distinct siliciclastic units, that predominate along the cliffs, in vertical and lateral extent. The carbonate rocks were correlated to the late Cretaceous Jandaíra Formation, which is covered by the siliciclastic Barreiras Formation. The Barreiras Formation occurs in two distinct structural settings, the usual one with nondeformed, subhorizontal strata, or as tilted beds, affected by strong deformation. Two lithofacies were recognized, vertically arranged or in fault contacts. The lower facies is characterized by silty-argillaceous sandstones with low-angle cross bedding; the upper facies comprises medium to coarse grained sandstones, with conglomeratic layers. The Tibau Formation (medium to coarse-grained sandstones with argillite intercalations) occurs at the NW side of the studied area, laterally interlayered with the Barreiras Formation. Eolic sediments correlated to the Potengi Formation overly the former units, either displaying an angular unconformity, or simply an erosional contact (stratigraphic unconformity). Outstanding structural features, identified in the Barreiras Formation, led to characterize a neocenozoic stress field, which generated faults and folds and/or reactivated older structures in the subjacent late cretaceous (to paleogene, in the offshore basin) section. The structures recognized in the Barreiras Formation comprise two distinct assemblages, namely a main extensional deformation between the localities of Ponta Grossa and Redonda, and a contractional style (succeeded by oblique extensional structures) at Vila Nova. In the first case, the structural assemblage is dominated by N-S (N±20°Az) steep to gently-dipping extensional faults, displaying a domino-style or listric geometry with associated roll-over structures. This deformation pattern is explained by an E-W/WNW extension, contemporaneous with deposition of the upper facies of the Barreiras Formation, during the time interval Miocene to Pleistocene. Strong rotation of blocks and faults generated low-angle distensional faults and, locally, subvertical bedding, allowing to estimate very high strain states, with extension estimates varying between 40% up to 200%. Numerous detachment zones, parallel to bedding, help to acommodate this intense deformation. The detachment surfaces and a large number of faults display mesoscopic features analoguous to the ones of ductile shear zones, with development of S-C fabrics, shear bands, sigmoidal clasts and others, pointing to a hydroplastic deformation regime in these cases. Local occurrences of the Jandaíra limestone are controled by extensional faults that exhume the pre-Barreiras section, including an earlier event with N-S extension. Finally, WNWtrending extensional shear zones and faults are compatible with the Holocene stress field along the present continental margin. In the Vila Nova region, close to Icapuí, gentle normal folds with fold hinges shallowly pluging to SSW affect the lower facies of the Barreiras Formation, displaying an incipient dissolution cleavage associated with an extension lineation at high rake (a S>L fabric). Deposition of the upper facies siliciclastics is controlled by pull-apart graben structures, bordered by N-NE-trending sinistral-normal shear zones and faults, characterizing an structural inversion. Microstructures are compatible with tectonic deformation of the sedimentary pile, burried at shallow depths. The observed features point to high pore fluid pressures during deformation of the sediments, producing hydroplastic structures through mechanisms of granular flow. Such structures are overprinted by microfractures and microfaults (an essentially brittle regime), tracking the change to microfracturing and frictional shear mechanisms accompanying progressive dewatering and sediment lithification. Correlation of the structures observed at the surface with those present at depth was tested through geophysical data (Ground Penetrating Radar, seismics and a magnetic map). EW and NE-trending lineaments are observed in the magnetic map. The seismic sections display several examples of positive flower structures which affect the base of the cretaceous sediments; at higher stratigraphic levels, normal components/slips are compatible with the negative structural inversion characterized at the surface. Such correlations assisted in proposing a structural model compatible with the regional tectonic framework. The strong neogenepleistocene deformation is necessarily propagated in the subsurface, affecting the late cretaceous section (Açu and Jandaíra formations), wich host the hydrocarbon reservoirs in this portion of the Potiguar Basin. The proposed structural model is related to the dextral transcurrent/transform deformation along the Equatorial Margin, associated with transpressive terminations of E-W fault zones, or at their intersections with NE-trending lineaments, such as the Ponta Grossa-Fazenda Belém one (the LPGFB, itself controlled by a Brasiliano-age strike-slip shear zone). In a first step (and possibly during the late Cretaceous to Paleogene), this lineament was activated under a sinistral transpressional regime (antithetic to the main dextral deformation in the E-W zones), giving way to the folds in the lower facies of the Barreiras Formation, as well as the positive flower structures mapped through the seismic sections, at depth. This stage was succeeded (or was penecontemporaneous) by the extensional structures related to a (also sinistral) transtensional movement stage, associated to volcanism (Macau, Messejana) and thermal doming processes during the Neogene-Pleistocene time interval. This structural model has direct implications to hydrocarbon exploration and exploitation activities at this sector of the Potiguar Basin and its offshore continuation. The structure of the reservoirs at depth (Açu Formation sandstones of the post-rift section) may be controlled (or at least, strongly influenced) by the deformation geometry and kinematics characterized at the surface. In addition, the deformation event recognized in the Barreiras Formation has an age close to the one postulated for the oil maturation and migration in the basin, between the Oligocene to the Miocene. In this way, the described structural cenario represents a valid model to understand the conditions of hydrocarbon transport and acummulation through space openings, trap formation and destruction. This model is potentially applicable to the NW region of the Potiguar Basin and other sectors with a similar structural setting, along the brazilian Equatorial Atlantic Margin
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The Rio do Peixe Basin is located in the border of Paraíba and Ceará states, immediately to the north of the Patos shear zone, encompassing an area of 1,315 km2. This is one of the main basins of eocretaceous age in Northeast Brazil, associated to the rifting event that shaped the present continental margin. The basin can be divided into four sub-basins, corresponding to Pombal, Sousa, Brejo das Freiras and Icozinho half-grabens. This dissertation was based on the analysis and interpretation of remote sensing products, field stratigraphic and structural data, and seismic sections and gravity data. Field work detailed the lithofacies characterization of the three formations previously recognised in the basin, Antenor Navarro, Sousa and Rio Piranhas. Unlike the classical vertical stacking, field relations and seismostratigraphic analysis highlighted the interdigitation and lateral equivalency between these units. On bio/chrono-stratigraphic and tectonic grounds, they correlate with the Rift Tectonosequence of neocomian age. The Antenor Navarro Formation rests overlies the crystalline basement in non conformity. It comprises lithofacies originated by a braided fluvial system system, dominated by immature, coarse and conglomeratic sandstones, and polymict conglomerates at the base. Its exposures occur in the different halfgrabens, along its flexural margins. Paleocurrent data indicate source areas in the basement to the north/NW, or input along strike ramps. The Sousa Formation is composed by fine-grained sandstones, siltites and reddish, locally grey-greenish to reddish laminated shales presenting wavy marks, mudcracks and, sometimes, carbonate beds. This formation shows major influence of a fluvial, floodplain system, with seismostratigraphic evidence of lacustrine facies at subsurface. Its distribution occupies the central part of the Sousa and Brejo das Freiras half-grabens, which constitute the main depocenters of the basin. Paleocurrent analysis shows that sediment transport was also from north/NW to south/SE
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The extension of the Pangaea started in the Upper Triassic and evolved to uplifts, magmatism and development a triple junction during the Mesozoic, and opening the Central Atlantic Ocean. The Brazilian Equatorial Atlantic margin was formed in three Mesozoic extensional events. The first event is recorded by the Calçoene Graben of the Foz do Amazonas Basin. The second event started in the Valangian and is recognized by the enlargement of the Foz do Amazonas Basin, formation of the Marajó and Grajaú basins, and the Gurupi Graben System. The third event commenced in the Albian related to northwestward progression of the rift system, which enlarged the Foz do Amazonas and formed the Potiguar, Ceará, Barreirinhas and Pará-Maranhão basins. At the end of the Lower Cretaceous the movements attenuated in the Marajó Basin and Gurupi Graben System; the extension concentrated in the Foz do Amazonas, Pará-Maranhão and Barreirinhas basins, and evolved to continental rupture of northern South America and western Africa opening of the Equatorial Atlantic Ocean.
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The Equatorial Atlantic Margin evolved from three rift systems recorded by a complex set of sedimentary basins developed since Upper Triassic to the Lower Cretaceous (Albian). The first rift system formed Foz do Amazonas Basin in Upper Triassic; the second phase formed Marajó Basin in Berriasian, a new rift in Foz do Amazonas Basin in Valanginian and Bragança-Viseu, Ilha Nova, São Luís e Barreirinhas basins in Aptian; the third phase formed Barreirinhas and Pará- Maranhão basins and a new rifting in the Foz do Amazonas Basin between the Aptian and Albian and evolved to continental break up. The main paleostress field during rift evolution was NE-SW and after the continental break up took the E-W direction, from the development of transform zones in the oceanic crust. From Miocene, South America was subjected to intraplate tectonics, which resulted in formation of E-W transcurrent faults that generated transtensive and transpressive segments that formed sedimentary basins and hills, resulting in changes in the drainage network. In Quaternary the landscape was modified by the last ice age that changed the sea level; the coastal drainage network was drowning resulting in the formation of the current line coast.
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Pós-graduação em Geologia Regional - IGCE
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A planície costeira de Soure, na margem leste da ilha de Marajó (Pará), é constituída por áreas de acumulação lamosa e arenosa, de baixo gradiente, sujeitas a processos gerados por marés e ondas. Suas feições morfológicas são caracterizadas por planícies de maré, estuários, canais de maré e praias-barreiras. A análise faciológica e estratigráfica de seis testemunhos a vibração, com profundidade média de 4 m, e de afloramentos de campo permitiu a caracterização dos ambientes deposicionais, sua sucessão temporal e sua correlação lateral, a elaboração de seções estratigráficas e a definição de uma coluna estratigráfica. Foram identificadas cinco associações de facies: (1) facies de planície de maré, (2) facies de manguezal, (3) facies de barra de canal de maré, (4) facies de praia e (5) facies de duna. A história sedimentar da planície costeira de Soure é representada por duas sucessões estratigráficas: (1) a sucessão progradacional, constituída pelas associações de facies de planície de maré, manguezal e barra de canal de maré; e (2) a sucessão retrogradacional, formada pelas associações de facies de praia e de duna. Essas sucessões retratam uma fase de expansão das planícies de maré e manguezais, com progradação da linha de costa (Holoceno médio a superior), e uma posterior fase de retrogradação, com migração dos ambientes de praias e dunas sobre depósitos lamosos de manguezal e planície de maré, no Holoceno atual. A história deposicional da planície costeira de Soure é condizente com o modelo de evolução holocênica das planícies costeiras do nordeste paraense.
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Rochas siliciclásticas da Formação Raizama, unidade basal do Grupo Alto Paraguai de idade ediacarana-cambriana (635 – 541 Ma), ocorrem distribuídas descontinuamente ao longo da margem sul do Cráton Amazônico e segmento norte da Faixa Paraguai, centro-oeste do Brasil, estado do Mato Grosso. Estas recobrem discordantemente os depósitos de plataforma carbonática do Grupo Araras, onde foram registrados evidências do evento glacial Marinoano (635 Ma). O Grupo Alto Paraguai representa os estágios finais da colisão entre os blocos Amazônico e Paranapanema que culminaram no fechamento do Oceano Clymene (540-520 Ma). A Formação Raizama com espessura de aproximadamente 570 m é constituída por pelitos, arenitos finos a grossos, e arenitos com cimento dolomítico previamente interpretados como depósitos flúvio-costeiros distribuídos nos membros inferior (270 m) e superior (300 m). O estudo faciológico e estratigráfico desta unidade na região de Nobres, Estado do Mato Grosso, foi focado principalmente na seção aflorante de 600 m no leito do rio Serragem, que inclui a Cachoeira da Serra do Tombador. Foram definidas 17 fácies sedimentares, agrupadas em cinco associações de fácies (AF) representativas de uma sucessão costeira progradante iniciando por depósitos de shoreface inferior, os quais recobrem em conformidade correlativa os depósitos de plataforma carbonática da Formação Serra do Quilombo (Grupo Araras). A AF1 consiste em arenitos com laminação plano-paralela e laminação truncada por onda (microhummocky), individualizada por camadas de pelito laminado interpretadas como depósitos de shoreface inferior. Destaca-se na AF1 a primeira ocorrência de níveis centimétricos bioturbados por Skolithos em depósitos neoproterozoicos – cambrianos na Faixa Paraguai. A AF2 é formada por arenitos com estratificação cruzada swaley e estratificação plano-paralela interpretada como depósitos de shoreface superior. A AF3 é composta por arenitos com estratificações cruzadas tangenciais e acanaladas com recobrimentos de siltito/arenito muito fino representativos de depósitos de canal e barras de submaré. A AF4 é caracterizada por arenitos com estratificações cruzadas tangencial e sigmoidal, laminação plano-paralela a cruzadas de baixo-ângulo, ritmito arenito muito fino/siltito com acamamento flaser e gretas de contração, organizados em ciclos métricos de raseamento ascendente de planície de maré. A AF5 é constituída por arenito com estratificação cruzada acanalada marcada por lags residuais na base da associação, arenito com estratificações plano-paralela e cruzada de baixo-ângulo, interpretados como depósitos fluviais distais de rios entrelaçados, parcialmente retrabalhados por ondas. Grãos detríticos de zircão foram obtidos da AF3 e datados pelo método U-Pb, sendo a idade de 1001±9 Ma interpretada como a idade de máxima deposição da Formação Raizama. Aliado a tal análise, as paleocorrentes NE-SE mostram que estes grãos teriam como áreas fontes principais a Faixa Sunsás, SW do Cráton Amazônico, não sendo descartada contribuições oriundas da parte NW desse Cráton. A idade mesoproterozóica obtida serviu principalmente para desvendar a proveniência da Formação Raizama, enquanto que as datações da base do Grupo Araras, em torno de 627-622 Ma, associada à presença inequívoca do icnogênero Skolithos, tornam esta unidade muito mais próxima do limite com o Cambriano Inferior. Traços fósseis do Proterozoico são caracterizados quase que exclusivamente por traços horizontais, sendo que bioturbações verticais praticamente são ausentes ao longo do Neoproterozoico. Esta inferência vem de encontro com a idade máxima de 541 Ma obtida para a Formação Diamantino, a qual recobre a unidade estudada. Os dados radiométricos aliados com as interpretações paleoambientais, que incluem o registro das primeiras atividades de organismos perfurantes na Faixa Paraguai, abrem perspectivas de entender com maiores detalhes a sequência de eventos que tipificam os estratos do limite Ediacarano-Cambriano do Brasil, ainda pouco conhecidos.
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Pós-graduação em Geologia Regional - IGCE
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Pós-graduação em Geociências e Meio Ambiente - IGCE