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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Mapeamento 3D de descontinuidades s?smicas na prov?ncia Borborema com fun??es de receptor

Almeida, Ygor Bastos Mesquita Minora de 18 December 2014 (has links)
Submitted by Automa??o e Estat?stica (sst@bczm.ufrn.br) on 2016-03-02T23:01:37Z No. of bitstreams: 1 YgorBastosMesquitaMinoraDeAlmeida_DISSERT.pdf: 7592861 bytes, checksum: 1713383707550d5acbf0d5b871effb2a (MD5) / Approved for entry into archive by Arlan Eloi Leite Silva (eloihistoriador@yahoo.com.br) on 2016-03-04T22:10:21Z (GMT) No. of bitstreams: 1 YgorBastosMesquitaMinoraDeAlmeida_DISSERT.pdf: 7592861 bytes, checksum: 1713383707550d5acbf0d5b871effb2a (MD5) / Made available in DSpace on 2016-03-04T22:10:21Z (GMT). No. of bitstreams: 1 YgorBastosMesquitaMinoraDeAlmeida_DISSERT.pdf: 7592861 bytes, checksum: 1713383707550d5acbf0d5b871effb2a (MD5) Previous issue date: 2014-12-18 / Conselho Nacional de Desenvolvimento Cient?fico e Tecnol?gico - CNPq / Atrav?s de fun??es de receptor migradas e empilhadas (phase-weightedstack), investigou-se a arquitetura crustal da Prov?ncia Borborema. Para isso, foram utilizados telessismos de ondas ? registrados em 64 esta??es sismogr?ficas distribu?das no Nordeste brasileiro, depois de aplicar um conjunto de modifica??es no algoritmo de empilhamento para corrigir inconsist?ncias detectadas no algoritmo original e melhorar sua efici?ncia computacional. A Prov?ncia Borborema representa a por??o mais oeste de um or?geno Neoproterozoico, que experimentou extens?o no Mesozoico, o que levou ? forma??o de um grande n?mero de bacias intracontinentais do tipo rifte, e, posteriormente, ? deriva continental. O Cenozoico foi marcado por processos de soerguimento topogr?fico, que poderia estar relacionado com vulcanismo, o que possibilitou a forma??o do Planalto da Borborema. Devido ? limitada compreens?o a respeito da arquitetura crustal da Prov?ncia, as rela??es de causa e efeito entre a topografia superficial, a extens?o Mesozoica e o soerguimento Cenozoico n?o s?o claras. O empilhamento de fun??es de receptor evidencia as convers?es ?? no limite entre a crosta e o manto, mostrando crosta espessa, entre 36 e 40 km na por??o sul do Planalto e crosta entre 30 e 32 km nas regi?es ao redor, incluindo o norte do Planalto. Essa mesma abordagem tamb?m revelou a presen?a de uma descontinuidade entre 9 e 18 km de profundidade, que tende a desaparecer em dire??o ao sul do Planalto, ? medida que a crosta se torna espessa. Dessa forma, argumenta-se que a crosta fina na Prov?ncia Borborema ? o resultado de processos de estiramento crustal durante o Mesozoico e que a descontinuidade intracrustal observada consiste num detachment de baixo ?ngulo, que atuou na acomoda??o da distens?o. A crosta espessa na por??o sul do Planalto seria, ent?o, um bloco com reologia mais resistente, que resistiu a deforma??o durante o Mesozoico, enquanto a crosta fina sob o norte do Planalto seria proveniente de uma bacia pret?rita, cuja crosta foi afinada durante o Mesozoico e soerguida durante o Cenozoico. / The crustal architecture of the Borborema Province was investigated through migration and stacking of receiver functions (phase-weighted-stack). The stacks were developed from teleseismic ?-waves recorded at 64 seismological stations distributed throughout Northeast Brazil, after applying a number of modifications to the stacking algorithm that corrected inconsistencies in the original algorithm and improved its computational efficiency. The Borborema Province is the westernmost portion of a Neoproterozoic orogen that experienced extension in the Mesozoic, leading to the formation of a number of intracontinental rift basins and, eventually, to the continental drift. The Cenozoic was marked by topographic uplift of the Province, perhaps related to coeval episodes of volcanism, which resulted in the formation of the Borborema Plateau. Due to limited understanding of the crustal architecture of the Province, the causal relationships between surface topography, Mesozoic extension, and Cenozoic uplift are poorly understood. The receiver function stacks highlight ?? conversions from the crust-mantle boundary that demonstrate a thick crust between 36 and 40 km in the southern Plateau, and crust between 30 and 32 km in the regions around, including the northern Plateau. The receiver function stacks also revealed the presence of a discontinuity between 9 and 18 km depth that tends to fade away towards the southern Plateau as the crust thickens. It is argued that the thin crust in the Borborema Province is the result of crustal stretching during Mesozoic times, and that the intracrustal discontinuity marks the location of a lowangle detachment zone that accommodated extension within the crust. The thick crust in the southern Plateau would then be a rheologically strong block that resisted deformation during the Mesozoic, while the thin crust beneath the northern Plateau would be a portion of a formerly depressed crust that experienced uplifted during the Cenozoic.
2

Estrutura crustal e mant?lica da prov?ncia Borborema atrav?s de fun??es do receptor e dispers?o de ondas superficiais

Nascimento, Rosana Maria do 29 January 2015 (has links)
Submitted by Automa??o e Estat?stica (sst@bczm.ufrn.br) on 2016-03-22T00:29:29Z No. of bitstreams: 1 RosanaMariaDoNascimento_TESE.pdf: 79491407 bytes, checksum: 65543c87c5a9f10fd3119a3ddf108730 (MD5) / Approved for entry into archive by Arlan Eloi Leite Silva (eloihistoriador@yahoo.com.br) on 2016-03-22T23:55:31Z (GMT) No. of bitstreams: 1 RosanaMariaDoNascimento_TESE.pdf: 79491407 bytes, checksum: 65543c87c5a9f10fd3119a3ddf108730 (MD5) / Made available in DSpace on 2016-03-22T23:55:31Z (GMT). No. of bitstreams: 1 RosanaMariaDoNascimento_TESE.pdf: 79491407 bytes, checksum: 65543c87c5a9f10fd3119a3ddf108730 (MD5) Previous issue date: 2015-01-29 / Coordena??o de Aperfei?oamento de Pessoal de N?vel Superior - CAPES / Conselho Nacional de Desenvolvimento Cient?fico e Tecnol?gico - CNPq / A Prov?ncia Borborema, localizada no nordeste do Brasil, possui um embasamento de idade Pr?-cambriana e um arcabou?o tect?nico estruturado no Neoproteroz?ico (740-560 Ma). Ap?s a separa??o dos continentes Sul-Americano e Africano, durante o Mesoz?ico formou-se um sistema de riftes no nordeste brasileiro, o qual deu origem ?s bacias marginais e interiores localizadas na Prov?ncia. Depois da separa??o continental, eventos de vulcanismos e epirogenia ocorreram na Prov?ncia, tais como o soerguimento do Planalto da Borborema e o magmatismo ao longo da linha Macau-Queimadas (AMQ), marcando assim a evolu??o da Prov?ncia. As causas do soerguimento do Planalto poderiam estar associadas a um underplating magm?tico (material m?fico preso na base da crosta), talvez relacionado com a gera??o de plugs continentais jovens (45-7 Ma) ao longo do AMQ devido a um mecanismo de convec??o em pequena escala na borda do continente. O objetivo deste trabalho ? investigar as causas do soerguimento intra-placa e sua poss?vel rela??o com o vulcanismo AMQ utilizando sismologia de banda larga, tendo em conta a correla??o de nossos resultados com estudos geof?sicos e geol?gicos realizados na Prov?ncia Borborema. As metodologias de banda larga para investigar a estrutura profunda na Prov?ncia incluem as fun??es do receptor e velocidade de dispers?o das ondas de superf?cie. Tanto as fun??es de receptor quanto a tomografia de dispers?o de ondas superficiais s?o m?todos que utilizam eventos teless?smicos e permitem obter estimativas de par?metros estruturais como espessura crustal, raz?o Vp/Vs e velocidade de onda S. Os sismogramas utilizados neste trabalho para as fun??es do receptor foram obtidas de 52 esta??es localizadas no Nordeste do Brasil: 16 esta??es de banda larga da rede RSISNE (Rede Sismogr?fica do Nordeste do Brasil), 21 esta??es de per?odo curto da rede INCT-ET (Instituto Nacional de Ci?ncia e Tecnologia ? Estudos Tect?nicos) e 6 esta??es de banda larga. Estes resultados acrescentam significativamente dados anteriores coletados em esta??es isoladas como a esta??o RCBR, da rede global GSN, as esta??es banda v larga CAUB e AGBL do projeto BLSP (Brazilian Lithosphere Seismic Project IAG/USP) e de 6 esta??es banda larga do projeto Mil?nio (Estudos geof?sicos e tect?nicos na Prov?ncia Borborema - CNPq). Para dispers?o de ondas de superf?cie foram usados sismogramas de 22 esta??es: 16 esta??es de banda larga da rede RSISNE, bem como das 6 esta??es banda larga do projeto Mil?nio. Neste trabalho foram desenvolvidas: (i) estimativas de espessura crustal e raz?o Vp/Vs para cada esta??o usando as fun??es do receptor, (ii) novas medidas de velocidade de grupo de ondas de superf?cie, que foram integradas com os percursos usados em uma tomografia da Am?rica do Sul, j? desenvolvida, para ampliar a resolu??o no Nordeste Brasileiro e (iii) modelos de velocidades de onda S (1D) para v?rios locais na Prov?ncia Borborema usando a invers?o simult?nea de fun??es do receptor com velocidades de dispers?o. Os resultados descrevem velocidades de onda S para a base da crosta que s?o consistentes com a presen?a de uma camada m?fica de 5-7.5 km de espessura. Foi observada a camada m?fica em apenas uma por??o da regi?o do planalto (parte sul) e aus?ncia da mesma na parte norte. Outra observa??o importante e que corrobora estudos de fun??es do receptor e refra??o s?smica s?o as diferentes espessuras crustais, tamb?m dividindo o planalto em uma parte de crosta fina (parte norte) e outra parte de crosta espessa (parte sul). Os modelos existentes para evidenciar a epirogenia n?o conseguem explicar todas essas observa??es. Sendo assim, prop?e-se que durante a orogenia Brasiliana, uma camada de material m?fico pr?-existente foi delaminada, total ou parcialmente, da crosta. A delamina??o parcial teria acontecido na parte sul do planalto, onde estudos independentes evidenciaram uma reologia mais resistente ? deforma??o. Ap?s isso, durante o Mesoz?ico e consequente processo de rifteamento houve afinamento da crosta da regi?o costeira e depress?o sertaneja, incluindo a parte norte do planalto. J? no Cenoz?ico, o soerguimento da parte norte do planalto teria ocorrido e o resultado seria uma parte norte sem material m?fico na base da crosta e parte sul com camada m?fica parcialmente delaminada,mas ambos com topografia elevada at? os dias atuais. / The Borborema Province, located in northeastern Brazil, has a basement of Precambrian age and a tectonic framework structured at the Neoproterozoic (740-560 Ma). After separation between South America and Africa during the Mesozoic, a rift system was formed, giving rise to a number of marginal and inland basins in the Province. After continental breakup, episodes of volcanism and uplift characterized the evolution of the Province. Plateau uplift was initially related to magmatic underplating of mafic material at the base of the crust, perhaps related to the generation of young continental plugs (45-7 Ma) along the Macau-Queimadas Alignment (MQA), due to a small-scale convection at the continental edge. The goal of this study is to investigate the causes of intra-plate uplift and its relationship to MQA volcanism, by using broadband seismology and integrating our results with independent geophysical and geological studies in the Borborema Province. The investigation of the deep structure of the Province with broadband seismic data includes receiver functions and surface-wave dispersion tomography. Both the receiver functions and surface-wave dispersion tomography are methods that use teleseismic events and allow to develop estimates of crustal parameters such as crustal thickness, Vp/Vs ratio, and S-velocity structure. The seismograms used for the receiver function work were obtained from 52 stations in Northeast Brazil: 16 broadband stations from the RSISNE network (Rede Sismogr?fica do Nordeste do Brasil), and 21 short-period and 6 broadband stations from the INCT-ET network (Instituto Nacional de Ci?ncia e Tecnologia ? Estudos Tect?nicos). These results add signifi- cantly to previous datasets collected at individual stations in the Province, which include station RCBR (GSN - Global Seismic Network), stations CAUB and AGBL (Brazilian Lithosphere Seismic Project IAG/USP), and 6 other broadband stations that were part of the Projeto Mil?nio - Estudos geof?sicos e tect?nicos na Prov?ncia Borborema/CNPq. For the surface-wave vii tomography, seismograms recorde at 22 broadband stations were utilized: 16 broadband stations from the RSISNE network and 6 broadband stations from the Mil?nio project. The new constraints developed in this work include: (i) estimates of crustal thickness and bulk Vp/Vs ratio for each station using receiver functions; (ii) new measurements of surfassewave group velocity, which were integrated to existing measurementes from a continental-scale tomography for South America, and (iii) S-wave velocity models (1D) at various locations in the Borborema Province, developed through the simultaneous inversion of receiver functions and surface-wave dispersion velocities. The results display S-wave velocity structure down to the base of the crust that are consistent with the presence of a 5-7.5 km thick mafic layer. The mafic layer was observed only in the southern portion of the Plateau and absent in its northern portion. Another important observation is that our models divide the plateau into a region of thin crust (northern Plateau) and a region of thick crust (southern Plateau), confirming results from independent refraction surveys and receiver function analyses. Existing models of plateau uplift, nonetheless, cannot explain all the new observations. It is proposed that during the Brazilian orogeny a layer of preexisting mafic material was delaminated, as a whole or in part, from the original Brasiliano crust. Partial delamination would have happened in the southern portion of the plateau, where independent studies found evidence of a more resistant rheology. During Mesozoic rifting, thinning of the crust around the southern Plateau would have formed the marginal basins and the Sertaneja depression, which would have included the northern part of the Plateau. In the Cenozoic, uplift of the northern Plateau would have occurred, resulting in a northern Plateau without mafic material at the base of the crust and a southern Plateau with partially delaminated mafic layer.

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