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Featured researches published by Dionísio Uendro Carlos.
Seg Technical Program Expanded Abstracts | 2011
Dionísio Uendro Carlos; Leonardo Uieda; Valéria C. F. Barbosa; Observatório Nacional; Marco Antonio Braga; Antonio Augusto; Seabra Gomes
SUMMARY We have interpreted the airborne gravity gradiometry data from Quadrilatero Ferrifero, an iron ore province in southeastern Brazil. Aiming at retrieving the geometry of the iron body, we have used a fast and novel gravity inversion method for estimating a 3D density-contrast distribution defined on a grid of prisms. This inversion approach combines robust data-fitting with an iterative procedure that does not require the solution of a large equation system. By using a systematic search algorithm, the estimated mass grows around prismatic elements called “seeds”. The interpreter specifies the locations and the associated density contrasts of the seeds. Automatically, the inversion method fits the observations and favors compact gravity sources closest to the seeds. To produce a more robust data fitting than least-squares fit, the inversion method minimizes the L1–norm of the residuals. Hence, it allows the presence of large residuals, so that outliers produced by non-targeted bodies can be handled. By using 126 seeds which were assigned density contrasts of 0.5 g.cm -3 and whose locations were based on our knowledge about the QF area, we have retrieved a continuous elongated iron body that fits the observed components of the gravity gradient. Our inversion result agrees reasonably with previous geophysical interpretations. In addition, our result honors the borehole information about the iron body
Revista Brasileira de Geofísica | 2010
Marco Antonio Braga; Dionísio Uendro Carlos; Yaoguo Li; Misac N. Nabighian
This research shows a geological interpretation with focus on iron ore exploration using 3D-FTG airborne gravity gradiometry and airborne magnetic data acquired at Bau-Gandarela region, Quadrilatero Ferrifero, Minas Gerais State, Brazil. The main idea was to establish priorities for hematite prospection in the region cited above. Towards this study was possible to optimize the core drilling, delimiting the best areas for iron ore mineralization, saving economical resources.
Revista Brasileira de Geofísica | 2009
Marco Antonio Braga; Henry Francisco Galbiatti; Dionísio Uendro Carlos; Rodrigo Rocha Sousa; Tiago de Almeida
This research job shows a detailed description of different steps of 3D-FTG (Full Tensor Gravity Gradiometry) planning and quality control (QC). The characteristics of 3D-FTG system, quality control during the flight and the result of the QC recorded through SNR (signal-to-noise ratio) analysis and the synthetical models of each gravity tensor component, will be presented. Iron oxide mineralization style is usually controlled by both crustal and local scale structures such as major shear, fault zones and lithological contacts. Air-FTG (Airborne Full Tensor Gravity Gradiometry) is nowadays the only existing airborne full tensor gradiometer technology can be used for both detailed and regional surveys. The system takes real time measurements of gravity gradient field in three orthogonal directions and at same time compensates for bias in the orientation and accelerations of the aircraft.
Revista Brasileira de Geofísica | 2010
Marco Antonio Braga; Dionísio Uendro Carlos; Rodrigo Rocha Sousa; Henry Francisco Galbiatti; Tiago de Almeida
The aim of this research is to show the application of terrain correction to 3D-FTG data at Bau-Gandarela, Quadrilaterio Ferrifero region at Minas Gerais State, Brazil. For this purpose we have used different digital terrain models with distinct resolutions (SRTM versus lidar).
Revista Brasileira de Geofísica | 2016
Wanderson Roberto Pereira; Dionísio Uendro Carlos
ABSTRACT. This paper proposes a set of procedures for quality control of gamma-gamma geophysical well logging data applied to the study of high density rock masses, which: (1) linearity verification between different spaced gamma-gamma... Keywords: geophysical well logging, gamma-gamma density, quality control. RESUMO. O presente trabalho propoe um conjunto de procedimentos para controle de qualidade de dados de perfilagem geofisica gama-gama aplicados ao estudo de macicos rochosos de alta densidade,.. Palavras-chave: perfilagem geofisica, densidade gama-gama, controle de qualidade.
Revista Brasileira de Geofísica | 2016
Wanderson Roberto Pereira; Dionísio Uendro Carlos; Marco Antonio Braga; Henry Francisco Galbiatti
ABSTRACT. The present paper shows the results of density measurement tests determined by probing of gamma-gamma geophysical well logging, performed in two stages: one at VALE Geophysical Well Logging Test Facility (GWTF), and another in boreholes for iron ore exploration... Keywords: geophysical well logging, iron ore exploration, data evaluation. RESUMO. O presente trabalho mostra os resultados dos testes de afericao de valores de densidades determinados por sonda de perfilagem geofisica gama-gama, realizados em duas etapas, uma no Campo de Teste de Perfilagem Geofisica VALE e outra em furos de sondagem para exploracao de minerio de ferro. Palavras-chave: perfilagem geofisica, exploracao mineral de ferrosos, afericao de dados.
Revista Brasileira de Geofísica | 2010
Marco Antonio Braga; Jadir da Conceição da Silva; Henrique Dayan; Dionísio Uendro Carlos; Henry Francisco Galbiatti; Tiago de Almeida; Rodrigo Rocha Sousa; Gilmar Carmo
Iron oxide mineralization style is usually controlled by both crustal and local scale structures such as major shear, fault zones and lithological contacts. Air-FTG (Airborne Full Tensor Gravity Gradiometry) is nowadays the only existing airborne full tensor gradiometer technology can be used for both detailed and regional surveys. The system takes real time measurements of gravity gradient field in three orthogonal directions and at same time compensates for bias in the orientation and accelerations of the aircraft. Each one of these measurements is related to either the density contrast or the geometry of discrete bodies. The aim of this work was to implement a numerical algorithm to compute the five gxx, gxy, gxz, gyy and gyz independent tensor components and use the knowledge acquired with them to help in real data interpretation and Air-FTG validation. To go over this subject, Air-FTG survey was flown over the Quadrilatero Ferrifero region, in Minas Gerais state, Brazil, to delineate and to map structures associated with iron oxide mineralizations. A complete procedure for data processing, together with joint interpretation of the geological models, ground gravity and air gravity gradiometry tensor components, indicates the high precision capability of the Air-FTG system in mapping and detecting iron oxide bodies with high accuracy. Results show that gradiometer depict a more observable advantage for identification of those near surface targets, revealing structures such as lineament, edges, corners and as a consequence, body shapes and their thickness. We have concluded that the best images of the subsurface rocks acquired by the Air-FTG platform can provide more realistic targets information than the conventional ground gravity field instruments.
Geophysics | 2014
Marco Antonio Braga; Issamu Endo; Henry Francisco Galbiatti; Dionísio Uendro Carlos
Ore Geology Reviews | 2014
Dionísio Uendro Carlos; Leonardo Uieda; Valéria C. F. Barbosa
Revista Brasileira de Geofísica | 2009
Marco Antonio Braga; Dionísio Uendro Carlos; Tiago de Almeida; Henrique Dayan; Rodrigo Rocha Sousa; Carlos A. Braga