78 resultados para Jorge Silva Melo
Resumo:
A durabilidade do betão está diretamente relacionada com o transporte de fluídos no seu interior que, por sua vez, está condicionado pela microestrutura do mesmo. Dadas as diferenças da estrutura porosa do betão auto-compactável (BAC) quando comparada com a de um betão convencional (BC), serão expectáveis algumas diferenças na durabilidade do primeiro. Um dos principais elementos diferenciadores entre ambos é a necessidade de quantidades significativas de material ultra fino (cimento e adições) por parte do BAC, essencialmente de modo a garantir os seus requisitos de comportamento no estado fresco. A utilização de adições, como o fíler calcário (FC), pode melhorar não só o comportamento do BAC no estado fresco como também influenciar a resistência mecânica e a durabilidade, através de uma microestrutura mais densa. Nesse sentido, o objetivo do presente trabalho é avaliar o efeito da utilização de FC na permeabilidade e na microestrutura do BAC. De modo a comprovar as referidas relações, foram efetuados estudos sobre a correlação entre as propriedades da microestrutura e os mecanismos de transporte, através da produção de misturas de BAC com 0%, 30%, 45% e 60% de substituição de cimento por FC. A caracterização físico-química das amostras de BAC foi realizada por difracção de raios-x e por microscopia eletrónica de varrimento (MEV), sendo esta última técnica também um método de caracterização morfológica. Para analisar as propriedades de transporte do BAC foram executados ensaios de absorção por imersão e absorção capilar. A análise dos resultados obtidos permitiu concluir que os betões em estudo apresentam características satisfatórias ao nível da microestrutura e propriedades de transporte. Salienta-se que em todas as amostras foi encontrada uma microestrutura densa, não tendo sido encontrada uma zona de transição entre o agregado e a pasta com características que a diferenciem da restante da pasta. Estas observações complementam os valores encontrados no estudo das propriedades de transporte, fazendo prever que as amostras apresentam uma baixa porosidade.
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A resistividade elétrica é uma propriedade associada tanto a características físicas como químicas do betão, permitindo avaliar a maior ou menor dificuldade de penetração dos agentes agressivos no seu interior antes de iniciado o processo de despassivação e consequente corrosão das armaduras. Este trabalho aborda as propriedades de permeabilidade, correlacionando-as com a resistividade elétrica, de betão auto-compactável (BAC) com diferentes tipos e quantidades de adições. Para esse efeito, foram produzidas misturas binárias e ternárias de BAC com recurso a cinzas volantes (CV) e fíler calcário (FC). Produziu-se um total de 11 misturas auto-compactáveis: uma só com cimento (C); três com C+CV em 30, 60 e 70% de substituição; três com C+FC em 30, 60 e 70% de substituição; quatro com C+CV+FC em combinações de 10-20, 20-10, 20-40 e 40-20% de substituição respetivamente; e, por fim, quatro misturas de acordo com as especificações LNEC E 464 em referência à norma NP EN 206-1. A avaliação da permeabilidade dos betões produzidos foi feita através do ensaio de determinação da absorção de água por capilaridade de acordo com a especificação LNEC E 393. A resistividade elétrica foi avaliada recorrendo à proposta de norma europeia apresentada pelo EU-Project CHLORTEST (EU funded research Project under 5FP GROWTH programme) e com base na recomendação técnica RILEM TC-154 EMC. Os resultados obtidos indicam que as propriedades de permeabilidade do BAC são fortemente condicionadas pelo tipo e pela quantidade de adições utilizadas, constatando-se que a adição de CV melhora significativamente algumas das propriedades estudadas principalmente em idades mais avançadas.
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The morpho-structural evolution of oceanic islands results from competition between volcano growth and partial destruction by mass-wasting processes. We present here a multi-disciplinary study of the successive stages of development of Faial (Azores) during the last 1 Myr. Using high-resolution digital elevation model (DEM), and new K/Ar, tectonic, and magnetic data, we reconstruct the rapidly evolving topography at successive stages, in response to complex interactions between volcanic construction and mass wasting, including the development of a graben. We show that: (1) sub-aerial evolution of the island first involved the rapid growth of a large elongated volcano at ca. 0.85 Ma, followed by its partial destruction over half a million years; (2) beginning about 360 ka a new small edifice grew on the NE of the island, and was subsequently cut by normal faults responsible for initiation of the graben; (3) after an apparent pause of ca. 250 kyr, the large Central Volcano (CV) developed on the western side of the island at ca 120 ka, accumulating a thick pile of lava flows in less than 20 kyr, which were partly channelized within the graben; (4) the period between 120 ka and 40 ka is marked by widespread deformation at the island scale, including westward propagation of faulting and associated erosion of the graben walls, which produced sedimentary deposits; subsequent growth of the CV at 40 ka was then constrained within the graben, with lava flowing onto the sediments up to the eastern shore; (5) the island evolution during the Holocene involves basaltic volcanic activity along the main southern faults and pyroclastic eruptions associated with the formation of a caldera volcano-tectonic depression. We conclude that the whole evolution of Faial Island has been characterized by successive short volcanic pulses probably controlled by brief episodes of regional deformation. Each pulse has been separated by considerable periods of volcanic inactivity during which the Faial graben gradually developed. We propose that the volume loss associated with sudden magma extraction from a shallow reservoir in different episodes triggered incremental downward graben movement, as observed historically, when immediate vertical collapse of up to 2 m was observed along the western segments of the graben at the end of the Capelinhos eruptive crises (1957-58).
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When performing a full calculation within the standard model (SM) or its extensions, it is crucial that one utilizes a consistent set of signs for the gauge couplings and gauge fields. Unfortunately, the literature is plagued with differing signs and notations. We present all SM Feynman rules, including ghosts, in a convention-independent notation, and we table the conventions in close to 40 books and reviews.
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Mestrado em Contabilidade e Gestão das Instituições Financeiras
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Trabalho final de Mestrado para obtenção do grau de Mestre em Engenharia Civil na Área de Especialização em Edificações
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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia Mecânica
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Self-compacting concrete (SCC) can soon be expected to replace conventional concrete due to its many advantages. Its main characteristics in the fresh state are achieved essentially by a higher volume of mortar (more ultrafine material) and a decrease of the coarse-aggregates. The use of over-large volumes of additions such as fly ash (FA) and/or limestone filler (LF) can substantially affect the concrete's pore structure and consequently its durability. In this context, an experimental programme was conducted to evaluate the effect on the concrete's porosity and microstructure of incorporating FA and LF in binary and ternary mixes of SCC. For this, a total of 11 SIX mixes were produced; 1 with cement only (C); 3 with C + FA in 30%, 60% and 70% substitution (fad); 3 with C + LF in 30%, 60% and 70% fad; 4 with C + FA + LF in combinations of 10-20%, 20-10%, 20-40% and 40-20% f(ad), respectively. The results enabled conclusions to be established regarding the SCC's durability, based on its permeability and the microstructure of its pore structure. The properties studied are strongly affected by the type and quantity of additions. The use of ternary mixes also proves to be extremely favourable, confirming the beneficial effect of the synergy between these additions. (C) 2015 Elsevier Ltd. All rights reserved.
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Resumo: Cement, as well as the remaining constituents of self-compacting mortars, must be carefully selected, in order to obtain an adequate composition with a granular mix as compact as possible and a good performance in the fresh state (self-compacting effect) and the hardened state (mechanical and durability-related behavior). Therefore in this work the possibility of incorporating nano particles in self-compacting mortars was studied. Nano materials are very reactive due mostly to their high specific surface and show a great potential to improve the properties of these mortars, both in mechanical and durability terms. In this work two nano materials were used, nano silica (nano SiO2) in colloidal state and nano titanium (nano TiO2) in amorphous state, in two types of self-compacting mortars (ratio binder:sand of 1:1 and 1:2). The self-compacting mortar mixes have the same water/cement ratio and 30% of replacement of cement with fly ashes. The influence of nano materials nano-SiO2 and nano-TiO2 on the fresh and hardened state properties of these self-compacting mortars was studied. The results show that the use of nano materials in repair and rehabilitation mortars has significant potential but still needs to be optimized. (C) 2015 Elsevier Ltd. All rights reserved.
Resumo:
Abstract Self-compacting concrete (SCC) can soon be expected to replace conventional concrete due to its many advantages. Its main characteristics in the fresh state are achieved essentially by a higher volume of mortar (more ultrafine material) and a decrease of the coarse-aggregates. The use of over-large volumes of additions such as fly ash (FA) and/or limestone filler (LF) can substantially affect the concrete's pore structure and consequently its durability. In this context, an experimental programme was conducted to evaluate the effect on the concrete's porosity and microstructure of incorporating FA and LF in binary and ternary mixes of SCC. For this, a total of 11 SCC mixes were produced: 1 with cement only (C); 3 with C + FA in 30%, 60% and 70% substitution (fad); 3 with C + LF in 30%, 60% and 70% fad; 4 with C + FA + LF in combinations of 10-20%, 20-10%, 20-40% and 40-20% fad, respectively. The results enabled conclusions to be established regarding the SCC's durability, based on its permeability and the microstructure of its pore structure. The properties studied are strongly affected by the type and quantity of additions. The use of ternary mixes also proves to be extremely favourable, confirming the beneficial effect of the synergy between these additions. © 2015 Elsevier Ltd. All rights reserved.
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This paper presents the results of a study on the behaviour of self-compacting concrete (SCC) in the fresh and hardened states, produced with binary and ternary mixes of fly ash (FA) and limestone filler (LF), using the method proposed by Nepomuceno. His method determines the SCC composition parameters in the mortar phase (self-compacting mortar - SCM) easily and efficiently, whilst guaranteeing the SCC properties in both the fresh and hardened states. For this, 11 SCMs were studied: one with cement (C) only; three with FA at 30%, 60% and 70% C substitution; three with LF at 30%, 60% and 70% C substitution; four with FA + LF in combinations of 10-20%, 20-10%, 20-40% and 40-20% C substitution. Once the composition of these mortars was defined, 18 SCC mixes were produced: 14 binary SCC mixes were produced with the seven binary mortar mixes, and four ternary SCC mixes were produced with the four ternary mortar mixes. In addition to the methodology proposed by Nepomuceno, the combined use of FA and LF in ternary mixtures was tested. The results confirmed that the method could yield SCC with adequate properties in both the fresh and hardened states. It was also possible to determine the SCC composition parameters in the mortar phase (self-compacting mortar - SCM) that will guarantee the SCC properties in both the fresh and hardened states, as confirmed through the optimized behaviour of the SCC in the fresh state and the promising results in the hardened state (compressive strength). The potential demonstrated by the joint use of LF and FA through the synergetic interaction of both additions is emphasized.
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This work studies the effect of incorporating fine recycled aggregates on the rheology of self-compacting concrete over time (at 15,45 and 90 min). The fine fraction of the natural aggregates was replaced at 0%, 20%, 50% and 100% with recycled sand. The fresh-state properties were studied by empirical tests (slump-flow, J-Ring, L-Box) and fundamental ones in an ICAR rheometer. The mixes with 50% and 100% recycled sand lost their SCC characteristics at 90 min. Contrarily the mix with 20% replacement maintained suitable passing and filling ability. The causes of this trend were an initial increase of plastic viscosity and afterwards an increase of yield stress. The compressive strength of the 50% and 100% replacement mixes decreased significantly and that of the 20% replacement mix less than 10%. (C) 2015 Elsevier Ltd. All rights reserved.
Resumo:
Energy efficiency plays an important role to the CO2 emissions reduction, combating climate change and improving the competitiveness of the economy. The problem presented here is related to the use of stand-alone diesel gen-sets and its high specific fuel consumptions when operates at low loads. The variable speed gen-set concept is explained as an energy-saving solution to improve this system efficiency. This paper details how an optimum fuel consumption trajectory based on experimentally Diesel engine power map is obtained.
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We start by presenting the current status of a complex flavour conserving two-Higgs doublet model. We will focus on some very interesting scenarios where unexpectedly the light Higgs couplings to leptons and to b-quarks can have a large pseudoscalar component with a vanishing scalar component. Predictions for the allowed parameter space at end of the next run with a total collected luminosity of 300 fb(-1) and 3000 fb(-1) are also discussed. These scenarios are not excluded by present data and most probably will survive the next LHC run. However, a measurement of the mixing angle phi(tau), between the scalar and pseudoscalar component of the 125 GeV Higgs, in the decay h -> tau(+)tau(-) will be able to probe many of these scenarios, even with low luminosity. Similarly, a measurement of phi(t) in the vertex (t) over bar th could help to constrain the low tan beta region in the Type I model.
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Dissertação para a obtenção do grau de Mestre em Engenharia Electrotécnica Ramo de Energia