708 resultados para Gradiente


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O comportamento ao fogo de pilares de aço inseridos em paredes de edifícios é substancialmente diferente dos pilares quando isolados. O contacto com as paredes provoca por um lado um efeito de redução das temperaturas, revelando-se de certa forma favorável em termos de comportamento ao fogo, mas por outro lado provocando um aquecimento diferencial das secções levando ao aparecimento de esforços desfavoráveis (momentos fletores) nos pilares, aumentando a instabilidade. Este último fenómeno designa-se de “Thermal Bowing”, provocado pelo aquecimento diferencial, deve ser avaliado por uma quantificação rigorosa das temperaturas nos perfis de aço. O estudo foi realizado em dois níveis, numérico e experimental. Foram testados pilares inseridos em paredes de alvenaria, tanto com a alma paralela como perpendicular à parede. Pretendeu-se assim, avaliar o efeito da ação térmica diferencial no comportamento estrutural dos pilares e concluir qual o efeito das paredes sobre estes na sua resistência estrutural. Foram ainda alvo de análise o nível de carregamento e a esbelteza do pilar. Compararam-se os resultados dos ensaios experimentais com os estudos numéricos, reproduzindo as condições utilizadas nos ensaios experimentais, por forma a contribuir para o desenvolvimento/melhoria dos métodos de dimensionamento dos pilares em situação de incêndio. O programa experimental comportou a realização de ensaios em pilares de aço de secção H, embebidos em paredes. A modelação numérica dos ensaios foi realizada utilizando o programa de computador de elementos finitos ABAQUS, elaborando-se uma análise geométrica e material não - linear. Os principais resultados deste trabalho de investigação foram uma melhor avaliação da evolução de temperaturas na secção transversal dos pilares de aço com aquecimento diferencial, inseridos em paredes, deslocamentos, forças de restrição e esforço axial daí decorrentes. A partir destes resultados, realizou-se uma análise detalhada do deslocamento do centro de gravidade ao longo do tempo, provocada pela degradação das propriedades mecânicas do aço.

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The thermoelectric energy conversion can be performed directly on generators without moving parts, using the principle of SEEBECK effect, obtained in junctions of drivers' thermocouples and most recently in semiconductor junctions type p-n which have increased efficiency of conversion. When termogenerators are exposed to the temperature difference (thermal gradient) eletromotriz a force is generated inducing the appearance of an electric current in the circuit. Thus, it is possible to convert the heat of combustion of a gas through a burner in power, being a thermoelectric generator. The development of infrared burners, using porous ceramic plate, is possible to improve the efficiency of heating, and reduce harmful emissions such as CO, CO2, NOx, etc.. In recent years the meliorate of thermoelectric modules semiconductor (TEG's) has stimulated the development of devices generating and recovery of thermal irreversibility of thermal machines and processes, improving energy efficiency and exergy these systems, especially processes that enable the cogeneration of energy. This work is based on the construction and evaluation of a prototype in a pilot scale, for energy generation to specific applications. The unit uses a fuel gas (LPG) as a primary energy source. The prototype consists of a porous plate burner infrared, an adapter to the module generator, a set of semiconductor modules purchased from Hi-Z Inc. and a heat exchanger to be used as cold source. The prototype was mounted on a test bench, using a system of acquisition of temperature, a system of application of load and instrumentation to assess its functioning and performance. The prototype had an efficiency of chemical conversion of 0.31% for electrical and heat recovery for cogeneration of about 33.2%, resulting in an overall efficiency of 33.51%. The efficiency of energy exergy next shows that the use of primary energy to useful fuel was satisfactory, although the proposed mechanism has also has a low performance due to underuse of the area heated by the small number of modules, as well as a thermal gradient below the ideal informed by the manufacturer, and other factors. The test methodology adopted proved to be suitable for evaluating the prototype

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The aims of the present study were to determine the effect of firefighter's boots on the vertical component of the ground reaction force (GRF) at heel strike, also known as heel strike transient and to analyze the effect of the viscoelastic insoles placed into the firefighter’s boots on this force during the gait. The magnitude of the impact force (FZI) from the vertical ground reaction force, the time to the production of this force (TZI) and the loading rate (GC) were registered. 39 firefighters without any pathology during 2 years before the study were recruited. Three different walking conditions were tested: 1) gait with firefighter's boots, 2) gait with firefighter's boots and viscoelastic insoles and 3) gait with sport shoes. The results showed a higher production and magnitude of the impact force during gait with firefighter's boots than during gait with sport shoes (13,1 vs. 2,6 % of occurrence of the impact force and 61,39 ± 35,18 %BW (body weight) vs. 49,38 ± 22,99 %BW, respectively). The gait with viscoelastic insoles placed into the firefighter's boots did not show significant differences in any of the parameters characterizing the impact force compared to the gait without insoles. The results of this study show a lower cushioning of the impact force during the gait with firefighter's boots in comparison to the gait with sport shoes and the inefficiency of the viscoelastic insoles placed inside the firefighter's boots to ameliorate the cushioning of the impact force at natural walking speed.

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The present work studies the natural ventilation and its relationship with the urban standards, which establishes the form of occupation and use of the land in our cities. The method simulates the application of the urban standards of the City Master Plan over the last three years. The simulation takes place in the District of Petrópolis, in the city of Natal , Brazil and analyses the effects of the standards of natural ventilation. The formulated hypothesis states that the reductions in the urban spaces between buildings rises up the vertical profile of ventilation, reducing, therefore, the velocity of the wind at the lower levels of the buildings. To develop the study, occupation models were built, using computerized, three-dimensional models. These occupation models were analyzed using the CFD (Computational Fluid Dynamics) code. The conclusion is that the more we reduce the urban space between buildings, the more we reduce the wind speed in constructed areas, increasing, therefore, the possibility to generate heat islands

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Cementing operations may occur at various stages of the life cycle of an oil well since its construction until its definitive abandonment. There are some situations in which the interest zones are depleted or have low fracture pressure. In such cases, the adoption of lowdensity cement slurries is an efficient solution. To this end, there are basically three ways to reduce the density of cement slurries: using microspheres, water extending additives or foamed cement. The objective of this study is to formulate, to study and to characterize lowdensity foamed cement, using an air entrainment surfactant with vermiculite or diatomite as water extenders and stabilizers. The methodology consists on preparation and evaluation of the slurries under the American Petroleum Institute (API) and the Brazilian Association of Technical Standards (ABNT) guidelines. Based on calculated densities between 13 and 15 ppg (1.559 and 1.799 g/cm3), the slurries were prepared with fixed surfactant concentration, varying the concentrations of vermiculite and diatomite and were compared with the base slurries. The results of plastic viscosity, yield point and gel strength and the compressive strength for 24 h showed that the slurries presented suitable rheology and mechanical strength for cementing operations in oil wells, and had their densities reduced between 8.40 and 11.89 ppg (1.007 and 1.426 g/cm3). The conclusion is that is possible, under atmospheric conditions, to obtain light weighted foamed cement slurries with satisfactory rheological and mechanical properties by means of air entrainment and mineral additions with extenders and stabilizers effects. The slurries have great potential for cementing operations; applicability in deep wells, in low fracture gradient formations and in depleted zones and bring cost savings by reducing the cementing consumption

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El manejo y la conservación de los recursos suelo y agua han sido y son motivo de gran preocupación para la sostenibilidad del Planeta en cuanto a la soberanía alimentaria y el desarrollo de la vida en general, esto se remarca en los países en vías de desarrollo que presentan fuertes contrastes, como lo es el Ecuador. Las limitaciones en la recolección de los datos climatológicos, de suelo, cobertura vegetal, entre otros; así como la aplicación de metodologías que se adapten a las realidades locales en cuanto a la medición de parámetros de calidad de agua y suelo, y la estimación de la erosión, motivaron el desarrollo de esta investigación; que inicialmente genera y analiza datos originales, estima con los modelos tradicionales el riesgo de pérdida de suelo, y propone un nuevo modelo para implementarlo en la región. Esto facilitaría la oferta de políticas o estrategias de manejo y conservación de los recursos naturales a diferentes escalas. En el Capítulo I, se hace una introducción general al tema de la tesis en relación al área de estudio, con una revisión del estado de la cuestión con algunos datos de investigaciones previas para la región. Se plantea el estado actual y en relación a este se describe el fin y los objetivos de la investigación. El Capítulo II, describe a detalle el área general de estudio y las zonas específicas, que por motivos de formato y limitaciones de espacio no pudieron ser incluidos en los artículos de los capítulos siguientes. También se describen los materiales y métodos que fueron requeridos para la generación de información de campo y laboratorio, durante el proceso de investigación y desarrollo de la tesis. En el Capítulo III, se describen las primeras relaciones de la cobertura vegetal con algunos parámetros de suelo y agua. Este capítulo describe un acercamiento al tema de investigación tanto de campo como de laboratorio a escala local (7 cuencas). El muestreo del suelo fue sistemático y el del agua uno en la estación seca y otro en la lluviosa. En este apartado se analiza únicamente la erodabilidad y topografía del suelo. El Capítulo IV, estima el riesgo de erosión del suelo causado por el cambio de la cubierta vegetal en un ecosistema de bosque de neblina montano, este análisis es a escala local. Fue modelada para esta zona la Ecuación Universal de Perdida de Suelo Revisada (RUSLE), para entender cómo se desarrolla el proceso erosivo y estimar los posibles escenarios futuros si es que la dinámica del cambio de uso de suelo continuara al ritmo actual. En el Capítulo V, se desarrolla el modelo a escala regional, en una cuenca semiárida con un fuerte gradiente altitudinal y pluviométrico. La cuenca representa un corte transversal del sistema montañoso de los Andes del sur de Ecuador. Aquí se observan grandes diferencias climáticas en distancias relativamente cortas, principalmente con la precipitación, estas diferencias son producto de una topografía accidentada. En este capítulo se propone una metodología con buenas posibilidades de ser utilizada para estimar el riesgo de la erosión del suelo, en regiones con datos escasos. Finalmente, el Capítulo VI contiene la discusión general de la tesis, incluyendo las conclusiones más relevantes. Fue posible analizar la espacio-temporalidad de los procesos erosivos para dos ecosistemas de un gradiente altitudinal y pluviométrico de los Andes. Por lo tanto, consideramos este trabajo útil para emprender investigaciones a mayor detalle y a diferentes escalas de los procesos erosivos del suelo, y así ir entendiendo y midiendo la relación e influencia de los diferentes factores que intervienen en dichos procesos, para proponer alternativas fundamentadas en bien del manejo y conservación del recurso suelo.

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The multiphase flow occurrence in the oil and gas industry is common throughout fluid path, production, transportation and refining. The multiphase flow is defined as flow simultaneously composed of two or more phases with different properties and immiscible. An important computational tool for the design, planning and optimization production systems is multiphase flow simulation in pipelines and porous media, usually made by multiphase flow commercial simulators. The main purpose of the multiphase flow simulators is predicting pressure and temperature at any point at the production system. This work proposes the development of a multiphase flow simulator able to predict the dynamic pressure and temperature gradient in vertical, directional and horizontal wells. The prediction of pressure and temperature profiles was made by numerical integration using marching algorithm with empirical correlations and mechanistic model to predict pressure gradient. The development of this tool involved set of routines implemented through software programming Embarcadero C++ Builder® 2010 version, which allowed the creation of executable file compatible with Microsoft Windows® operating systems. The simulator validation was conduct by computational experiments and comparison the results with the PIPESIM®. In general, the developed simulator achieved excellent results compared with those obtained by PIPESIM and can be used as a tool to assist production systems development

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

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Although there are a wide variety of additives that act in fresh state, to adjust the properties of cement, there is also a search by additions that improve the tenacity of the cement in the hardened state. This, in turn, can often be increased by inserting fibers, which act on the deflection of microcracks. This study aimed to use a microfiber glass wool (silica-based) as an additive reinforcing the cement matrix, improving the rupture tenacity, in order to prevent the propagation of microcracks in the cement sheath commonly found in oil wells submitted to high temperatures. The fibers were added at different concentrations, 2 to 5% (BWOC) and varied average sizes, grinding for 90 s, 180 s, 300 s, 600 s. The cement slurries were made with a density of 1,90 g/ cm3 (15,6 lb/gal), using Portland cement CPP- Special Class as the hydraulic binder and 40% silica flour. The characterization of the fiber was made by scanning electron microscopy (SEM), particle size by sieving, X-ray fluorescence (XRF), X-ray diffraction (XRD) and thermogravimetry (TG / DTG). Were performed technological tests set by the API (American Petroleum Institute) by rheology, stability, free water, compressive strength, as well as testing rupture energy, elastic modulus and permeability. The characterization results showed good thermal stability of the microfiber glass wool for application in oil wells submitted to steam injection and, also, that from the particle size data, it was possible to suggest that microfibers milled up to 300 s, are ideal to act as reinforcement to the cement slurries. The rheological parameters, there was committal of plastic viscosity when larger lengths were inserted of microfiber (F90). The values obtained by free water and stability were presented according to API. The mechanical properties, the incorporation of microfiber to the cement slurries gave better rupture tenacity, as compared to reference cement slurries. The values of compressive strength, elastic modulus and permeability have been maintained with respect to the reference cement slurries. Thus, cement slurries reinforced with microfiber glass wool can ensure good application for cementing oil wells submitted to steam injection, which requires control of microcracks, due to the thermal gradients

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Cementing operation is one of the most important stages in the oil well drilling processes and has main function to form hydraulic seal between the various permeable zones traversed by the well. However, several problems may occur with the cement sheath, either during primary cementing or during the well production period. Cements low resistance can cause fissures in the cement sheath and compromise the mechanical integrity of the annular, resulting in contamination of groundwater and producing zones. Several researches show that biomass ash, in particular, those generated by the sugarcane industry have pozzolanic activity and can be added in the composition of the cementing slurries in diverse applications, providing improvements in mechanical properties, revenue and cement durability. Due to the importance of a low cost additive that increases the mechanical properties in a well cementing operations, this study aimed to potentiate the use of sugarcane bagasse ash as pozzolanic material, evaluate the mechanisms of action of this one on cement pastes properties and apply this material in systems slurries aimed to cementing a well with 800 m depth and geothermal gradient of 1.7 °F/100 ft, as much primary cementing operations as squeeze. To do this, the ash beneficiation methods were realized through the processes of grinding, sifting and reburning (calcination) and then characterization by X-ray fluorescence, XRD, TG / DTG, specific surface area, particle size distribution by laser diffraction and mass specific. Moreover, the ash pozzolanic activity added to the cement at concentrations of 0%, 20% and 40% BWOC was evaluated by pozzolanic activity index with lime and with Portland cement. The evaluation of the pozzolanic activity by XRD, TG / DTG and compressive strength confirmed the ash reactivity and indicated that the addition of 20% in the composition of cement slurries produces improvement 34% in the mechanical properties of the slurry cured. Cement slurries properties evaluated by rheological measurements, fluid loss, free fluid, slurry sedimentation, thickening time and sonic strength (UCA) were satisfactory and showed the viability of using the sugarcane ash in cement slurries composition for well cementing

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

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Se presenta el estudio de la composición y distribución de la vegetación a lo largo de un gradiente ambiental en los bosques subtropicales de montaña o Yungas de la “Reserva Ecológica de Uso Múltiple Serranías de Zapla” (Provincia de Jujuy, Argentina). Se utilizó la metodología fitosociológica de Braun-Blanquet y la “Tipología Bioclimática de la Provincia de Jujuy” basada en la “Clasificación Bioclimática de la Tierra”. Se realizaron 120 transectos y confeccionaron los inventarios fitosociológicos correspondientes; en cada inventario se relevaron las especies presentes en los estratos arbóreo, arbustivo y herbáceo y se consignaron los índices de abundancia-dominancia de dichas especies, asimismo se determinó la riqueza específica y la frecuencia de cada una de las especies registradas. Se identificaron en total 257 especies vegetales pertenecientes a 194 géneros y a 66 familias botánicas. Se determinó la riqueza a nivel especies y de familias en cada estrato de vegetación, se establecieron los tipos biológicos presentes y se confeccionó un espectro biológico que refleja adecuadamente el tipo de formación vegetal que se desarrolla en el área de estudio. Se analizaron las variaciones en la composición florística, abundancia-dominancia, frecuencia y riqueza de las especies a lo largo del gradiente ambiental existente. Se realizó la caracterización bioclimática general del área estudiada, para ello se utilizó la información proporcionada por la “Tipología Bioclimática de la Provincia de Jujuy”, también se realizó la caracterización bioclimática de cada transecto, para lo cual se calcularon los Índices de termicidad (It) y ombrotérmicos (Io) utilizando datos de temperatura estimados en función de la altitud y de precipitación que fueron extrapolados de los datos climáticos de seis localidades de referencia ubicadas dentro del área; a partir de estos datos se confeccionó una Tabla Bioclimática...

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Os gradientes altitudinais são importantes modelos em ecologia pois permitem, numa escala reduzida, estudar a influência da variação de diversas variáveis ambientais nos padrões de biodiversidade existentes. Estes padrões são influenciados por diversos factores, desde variáveis climáticas às relacionadas com a perturbação humana. Nesta tese é estudada a variação na composição das comunidades de borboletas ao longo do gradiente altitudinal na Serra da Estrela e são testadas duas hipóteses sobre os padrões de riqueza específica ao longo do gradiente altitudinal: a regra de Rapoport e o “Mid Domain Effect” (MDE). Foram assinaladas 70 espécies de borboletas neste estudo e constatou-se que a variação na riqueza de espécies de borboletas apresenta um padrão “mid peak” apoiando o MDE. Verificou-se também que as comunidades de borboletas do mesmo nível altitudinal são mais semelhantes entre si independentemente da vertente em que se encontram e são também mais semelhantes com as comunidades dos níveis altitudinais adjacentes. Finalmente, a análise da distribuição de algumas espécies ameaçadas de borboletas torna evidente a necessidade de realização de mais estudos sobre a biologia da conservação deste grupo de animais em Portugal; Abstract: Altitudinal gradients are important ecological models because they allow us to study the influence of diverse environmental variables in the existing biodiversity patterns. These patterns are influenced by various factors, from climatic variables to variables related to human disturbance. In this thesis we studied the variations in the composition of the butterfly assemblages along the altitudinal gradient of Serra da Estrela and we tested two hypotheses regarding the species richness patterns along the altitudinal gradient: Rapoport’s rule and the Mid Domain Effect (MDE). In this study 70 butterfly species were marked recorded and it was observed that the butterfly species richness presents a mid-peak pattern supporting the MDE. It was also noted that the butterfly assemblages in the same altitudinal level show more similarity within themselves regardless of the slope they are found in, and are also more similar to the assemblages present in the adjacent altitudinal levels. Finally, the distribution of some threatened butterfly species was analyzed and it became evident the need to do more studies regarding the conservation biology of this animal group in Portugal.

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O objetivo desse estudo foi avaliar o efeito do cultivo orgânico certificado e do cultivo convencional do morangueiro na diversidade de Proteobacterias e Actinobacterias do solo por meio da utilização da técnica independente de cultivo de gel de eletroforese em gradiente desnaturante (DGGE). Os solos destes dois sistemas de cultivo foram coletados em uma área produtora de morango nas profundidades de 0-10 e 10-20 cm. As alterações nas comunidades bacterianas foram observadas para as Proteobacterias (Alfa e Beta), que se diferenciaram na análise dos perfis de DGGE por similaridade e análise de componentes principais (PCA). A comunidade de Actinobacterias mostrou-se resiliente, não sendo alterada devido à alteração da metodologia de cultivo. Desta maneira, pode-se propor que as bactérias mais diretamente ligadas às plantas e, responsivas a fatores que interferem diretamente na suplementação nutricional e proteção desta, respondem às alterações das condições de manejo, alterando sua composição e a estrutura da comunidade.

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Este trabalho teve por objetivo avaliar a tolerância de isolados de levedura para aplicação no controle biológico de podridões pós-colheita de frutos em elevadas temperaturas e baixa disponibilidade de água. As leveduras foram inoculadas em meio de cultivo líquido contendo um gradiente de concentrações de polietilenoglicol 6000 de forma a alcançar potenciais osmóticos de 0 Mpa, -2 Mpa, -5 Mpa, -10 Mpa, -15, -20 Mpa, e incubados em BOD nas temperaturas de 15 °C, 20 °C, 25 °C, 30 °C, 35 °C e 40 °C. A partir da análise das curvas de crescimento obtidas, verificou-se que os isolados Sacharomyces sp. L10 e S. boulardi L7K apresentaram a maior suscetibilidade aos estresses abióticos, com crescimento próximo à zero nas condições restritivas de cultivo. O isolado Sacharomyces cerevisiae LF apresentou a maior tolerância à combinação dos fatores analisados, seguido de Pichia kudriavzevii L9, demonstrando maior potencial para aplicação em condições de campo para a prevenção de infecções de patógenos quiescentes.