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A previsão da capacidade de carga de estacas constitui-se um dos desafios da engenharia de fundações por requerer, na teoria, a estimativa de propriedades do solo, suas alterações pela execução da fundação e o conhecimento do mecanismo de interação solo-estaca. Devido à dificuldade de reproduzir analítica e numericamente o mecanismo de interação solo-estaca, a prática brasileira faz uso correlações empíricas, relacionando diretamente os resultados do ensaio SPT com o desempenho do elemento de fundação. Apesar da grande contribuição dos métodos tradicionalmente utilizados, a sua validade está limitada à prática construtiva regional e às condições específicas dos casos históricos utilizados em seu estabelecimento. Com o objetivo de incorporar à engenharia de fundações brasileira um novo método de previsão de capacidade de carga de estacas, obtido diretamente a partir de ensaios SPT, desenvolveu-se nesta pesquisa uma metodologia baseada na interpretação do ensaio SPT sugerida por Odebrecht (2003). À luz desta nova interpretação, utiliza-se a força dinâmica de reação do solo à cravação do amostrador SPT para estimar a capacidade de carga de estacas, relacionando os mecanismos de mobilização de resistência do amostrador (modelo) com os da estaca (protótipo). No intuito de validar a metodologia proposta, organizou-se neste trabalho, um expressivo banco de dados compostos por 325 provas de carga à compressão e 43 provas de carga à tração, executadas em diferentes regiões do país. Das provas de carga à compressão, 132 casos são de estacas cravadas pré-moldadas de concreto, 28 de estacas metálicas, 95 de estacas hélice contínua e 70 casos de estacas escavadas. Já nas provas de carga à tração, 3 casos são de estacas cravadas pré-moldadas, 31 de estacas hélice contínua e 9 casos de estacas escavadas. Conclui-se a partir de análises comparativas entre cargas previstas e medidas que o método proposto é capaz de prever de forma satisfatória a capacidade de carga de estacas. Uma análise estatística dos dados possibilitou atribuir à estimativa de capacidade de carga, um intervalo de confiança das previsões, baseado na confiabilidade requerida para o projeto.

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A concorrência intramodal é uma forma de mitigação dos problemas derivados de um monopólio natural. Os setores assim estruturados caracterizam-se por elevados custos fixo e a fundo perdido, com grandes economias de escala e necessidade de elevada escala mínima de eficiência para viabilização da atividade. Essas circunstâncias impedem que a concorrência, em seu sentido mais óbvio, seja ali instaurada. Esse é o caso do setor ferroviário, onde se verifica a inviabilidade econômica de duplicação da infraestrutura. Entretanto, a depender da política regulatória adotada pelo Estado, um ambiente mais competitivo pode ser instaurado. O trabalho propõe uma análise comparada entre o modelo regulatório implementado na Alemanha, a partir das reformas ferroviárias propostas pela União Europeia, buscando extrair da experiência estrangeira aprendizados quanto aos dilemas enfrentados e características desejadas ao modelo institucional brasileiro para as novas concessões ferroviárias nacionais previstas no Plano Nacional de Investimento em Logística (PIL). O objetivo da análise consiste em verificar qual foi o modelo regulatório aplicado pela Alemanha para garantir parâmetros satisfatórios de concorrência intramodal e o modelo proposto pelo Governo Federal, com o objetivo de incentivar a ampliação do uso desse modal na cadeia logística brasileira, assim como aumentar a densidade da malha. Para permitir uma efetiva comparação dos modelos, faz-se necessário proceder preliminarmente a um breve entendimento sobre os arranjos regulatórios existentes que objetivam garantir o acesso à malha ferroviária: o tráfego mútuo, o direito de passagem e as formas de unbundling. A hipótese de investigação consiste em observar que as mudanças na regulação setorial que estão sendo consideradas pelo governo brasileiro se distanciam tanto do modelo que foi utilizado para a desestatização do setor, nos anos 90, quanto da experiência alemã de unbundling.

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The eutrofization is a natural process of accumulation of nutrients in aquatic´s body that it has been accelerated for the human´s actives, mainly the related with the activities of camp, industrial and the inadequate disposition of the domestic sewage. The enrichment of the aquatic´s body with nutrients, mainly the nitrogen and the phosphorus, and the consequent proliferation of algae and Cyanobacteria can commit the quality of the water for the public provisioning, for the fish farming and for other ends. The problem becomes more critical when there is a shortage of water naturally as in the semi-arid area of the Brazilian northeast. Before that problem this work had as objective evaluates the trophic state of six reservoirs of the basin of River Seridó of Rio Grande of Norte and also estimate the capacity of load of match of the reservoir and risk probabilities based on the established limits by the resolution Conama 357/05. The results demonstrate that the six reservoirs are eutrofization, with concentration of total phosphorus and cloro a in the water upster to 50 e 12 μg l-1. The results show that space homogeneity exists in the state trophic of the reservoirs, but a significant variation interanual in function of the increase of the concentrations of nutrients and decrease of the transparency of the water with the reduction of the body of water accumulated in the reservoirs.The results of the simulation risk estocastic show that the reservoirs could receive annually from 72 to 216 Kg of P, assuming a risk of 10% of increasing in more than 30 μg l-1 the annual medium concentrations of total match in the water of these reservoirs. This load could be high in until 360 kg of P a year in case the managers assume a risk of 10% of increasing in more than 50 μg l-1 the annual medium concentrations of total phosphorus in the waters of these reservoirs

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The oil companies in the area in general are looking for new technologies that can increase the recovery factor of oil contained in reservoirs. These investments are mainly aimed at reducing the costs of projects which are high. Steam injection is one of these special methods of recovery in which steam is injected into the reservoir in order to reduce the viscosity of the oil and make it more mobile. The process assisted gravity drainage steam (SAGD) using steam injection in its mechanism, as well as two parallel horizontal wells. In this process steam is injected through the horizontal injection well, then a vapor chamber is formed by heating the oil in the reservoir and, by the action of gravitational forces, this oil is drained down to where the production well. This study aims to analyze the influence of pressure drop and heat along the injection well in the SAGD process. Numerical simulations were performed using the thermal simulator STARS of CMG (Computer Modeling Group). The parameters studied were the thermal conductivity of the formation, the flow of steam injection, the inner diameter of the column, the steam quality and temperature. A factorial design was used to verify the influence of the parameters studied in the recovery factor. We also analyzed different injection flow rates for the model with pressure drop and no pressure drop, as well as different maximum flow rates of oil production. Finally, we performed an economic analysis of the two models in order to check the profitability of the projects studied. The results showed that the pressure drop in injection well have a significant influence on the SAGD process.

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Nowadays, most of the hydrocarbon reserves in the world are in the form of heavy oil, ultra - heavy or bitumen. For the extraction and production of this resource is required to implement new technologies. One of the promising processes for the recovery of this oil is the Expanding Solvent Steam Assisted Gravity Drainage (ES-SAGD) which uses two parallel horizontal wells, where the injection well is situated vertically above the production well. The completion of the process occurs upon injection of a hydrocarbon additive at low concentration in conjunction with steam. The steam adds heat to reduce the viscosity of the oil and solvent aids in reducing the interfacial tension between oil/ solvent. The main force acting in this process is the gravitational and the heat transfer takes place by conduction, convection and latent heat of steam. In this study was used the discretized wellbore model, where the well is discretized in the same way that the reservoir and each section of the well treated as a block of grid, with interblock connection with the reservoir. This study aims to analyze the influence of the pressure drop and heat along the injection well in the ES-SAGD process. The model used for the study is a homogeneous reservoir, semi synthetic with characteristics of the Brazilian Northeast and numerical simulations were performed using the STARS thermal simulator from CMG (Computer Modelling Group). The operational parameters analyzed were: percentage of solvent injected, the flow of steam injection, vertical distance between the wells and steam quality. All of them were significant in oil recovery factor positively influencing this. The results showed that, for all cases analyzed, the model considers the pressure drop has cumulative production of oil below its respective model that disregards such loss. This difference is more pronounced the lower the value of the flow of steam injection

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To aureus α-HL channel, we used the cysteine-scanning mutagenesis technique. Twenty-four mutants were produced from the substitution of a single aminoacid of the primary structure of the α-HL pro this yzed after the incorporation of a mutant channel in planar lipid bilayer membranes. The modified proteins were studied in the absence and presence of watersoluble specific sulphydryl-specific reagents, in order to introduce a strong positive or negative harge at positions of substitution. The introduction of a negative charge in the stem region onverted the selectivity of the channel from weak anionic to more cationic. However, the troduction of a positive charge increased its selectivity to the anion. The degree of these alterations was inversely dependent on the channel radius at the position of the introduced harge (selectivity). As to the asymmetry of the conductance-voltage, the influence of the harge was more complex. The introduction of the negative charge in the stem region (the trans art of the pore) provoked a decrease. The intensity of these alterations depended on the radius, and on the type of free charge at the pore entrance. These results suggest that the free charge at surrounds the pore wall is responsible for the cation-anion selectivity of the channel. The istribution of the charges between the entrances is crucial for determining the asymmetry of e conductance-voltage curves. We hope that these results serve as a model for studies with other nanometric channels, in biological or planar lipid bilayer membranes or in iotechnological applications

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Conselho Nacional de Desenvolvimento Científico e Tecnológico