883 resultados para Canais (Engenharia hidraulica)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Pós-graduação em Agronomia (Energia na Agricultura) - FCA
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Não disponível
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This work studies the most commonly used methods and make comparisons and discussions of the findings made by each of them and the results provided by them. The objective of this research was to show that the method of characteristics is currently the most efficient method to perform these simulations because of its broad scope low simplifications, requirement allowing to consider every detail of the pipe and fluid. Manual calculations are performed and also a software capable of calculating this phenomenon for various situations, such as water pump, elevated tanks, valves and quick maneuver was developed. The software is based on the method of characteristics that is currently recommended by ABNT. These methods, and the results are obtained numerically and graphically are adopted pipes and amount of downstream conditions and in which will be applied. The conclusions reached showed that the Allievi method is widely used yet because of its efficiency and quick calculation for simple pipes. The method of characteristics, although a lot of work to be calculated due to the calculation is iterative process and requires a program to use it, is the only one that allows the calculation with all amount to the conditions situations and downstream of all the pipe possibilities found
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Dissertação de Mestrado, Biologia Marinha, Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2016
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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia de Electrónica e Telecomunicações
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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia de Electrónica e Telecomunicações
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Os escoamentos no interior de zonas urbanas, apresentam grande heterogeneidade, pelo que a sua caracterização, requer uma formulação que incorpore explicitamente essa variabilidade espacial. A caracterização, simulação (à escala) e modelação do escoamento em canais artificiais e a aplicação a um caso de estudo, no Laboratório de Hidráulica da UMa, representa o cerne desta dissertação. Os objetivos principais desta dissertação são: a caracterização e desenvolvimento de ferramentas de simulação do comportamento do escoamento em canais artificiais, no caso de uma variação súbita dos caudais afluentes, mecanismos de prevenção de cheia; o desenvolvimento de um modelo de simulação hidrodinâmico, considerando os escoamentos variáveis em superfície livre no caso de situações de cheia, na simulação entre as condições variáveis das afluências, das condições hidromorfológicas do canal e da instalação e operação dos sistemas e regulação dos escoamentos; e ainda a análise da viabilidade da simulação (modelo) na gestão e prevenção de cheias em canais artificiais. Numa primeira instância, procede-se à recolha de toda a informação bibliográfica disponível. Com recurso aos modelos digitais do terreno e ao programa ArcGis, é efetuada toda uma exaustiva caracterização da bacia hidrográfica, relativa ao caso de estudo (canal artificial), a partir da qual foi possível obter os dados inerentes às características geométricas, características de relevo e características de drenagem. Segue-se a análise da precipitação com recurso a folhas de cálculo e dados fornecidos pelas instituições pertinentes, de forma a obter valores de precipitação média diária e anual para aplicação de fórmulas, tanto para calcular valores de tempo de concentração, bem como caudais. O próximo passo é selecionar os troços relevantes do canal em estudo e com recurso ao equipamento disponível no Laboratório de Hidráulica da UMa, à folha de cálculo programada e ao programa HEC-RAS procede-se à simulação/modelação/análise desses troços, comparando o resultado/comportamento simulado, com o expectável e entre os vários métodos. Por fim, são expostas as conclusões, bem como algumas considerações finais e uma listagem de objetivos a manter ou alcançar nos próximos anos, onde se incluem, ações prioritárias e recomendações visando, não só melhorar o processo de caracterização do escoamento em canais artificiais, bem como simplificar a prevenção e gestão de cheias.
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Due to the large amount of television content, which emerged from the Digital TV, viewers are facing a new challenge, how to find interesting content intuitively and efficiently. The Personalized Electronic Programming Guides (pEPG) arise as an answer to this complex challenge. We propose TrendTV a layered architecture that allows the formation of social networks among viewers of Interactive Digital TV based on online microblogging. Associated with a pEPG, this social network allows the viewer to perform content filtering on a particular subject from the indications made by other viewers of his network. Allowing the viewer to create his own indications for a particular content when it is displayed, or to analyze the importance of a particular program online, based on these indications. This allows any user to perform filtering on content and generate or exchange information with other users in a flexible and transparent way, using several different devices (TVs, Smartphones, Tablets or PCs). Moreover, this architecture defines a mechanism to perform the automatic exchange of channels based on the best program that is showing at the moment, suggesting new components to be added to the middleware of the Brazilian Digital TV System (Ginga). The result is a constructed and dynamic database containing the classification of several TV programs as well as an application to automatically switch to the best channel of the moment
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Wavelet coding has emerged as an alternative coding technique to minimize the fading effects of wireless channels. This work evaluates the performance of wavelet coding, in terms of bit error probability, over time-varying, frequency-selective multipath Rayleigh fading channels. The adopted propagation model follows the COST207 norm, main international standards reference for GSM, UMTS, and EDGE applications. The results show the wavelet coding s efficiency against the inter symbolic interference which characterizes these communication scenarios. This robustness of the presented technique enables its usage in different environments, bringing it one step closer to be applied in practical wireless communication systems
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The main goal of the present work is related to the dynamics of the steady state, incompressible, laminar flow with heat transfer, of an electrically conducting and Newtonian fluid inside a flat parallel-plate channel under the action of an external and uniform magnetic field. For solution of the governing equations, written in the parabolic boundary layer and stream-function formulation, it was employed the hybrid, numericalanalytical, approach known as Generalized Integral Transform Technique (GITT). The flow is sustained by a pressure gradient and the magnetic field is applied in the direction normal to the flow and is assumed that normal magnetic field is kept uniform, remaining larger than any other fields generated in other directions. In order to evaluate the influence of the applied magnetic field on both entrance regions, thermal and hydrodynamic, for this forced convection problem, as well as for validating purposes of the adopted solution methodology, two kinds of channel entry conditions for the velocity field were used: an uniform and an non-MHD parabolic profile. On the other hand, for the thermal problem only an uniform temperature profile at the channel inlet was employed as boundary condition. Along the channel wall, plates are maintained at constant temperature, either equal to or different from each other. Results for the velocity and temperature fields as well as for the main related potentials are produced and compared, for validation purposes, to results reported on literature as function of the main dimensionless governing parameters as Reynolds and Hartman numbers, for typical situations. Finally, in order to illustrate the consistency of the integral transform method, convergence analyses are also effectuated and presented
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In Brazil, between the late nineteenth and early decades of the twentieth, polytechnic engineers assumed an important role in discussing the establishment of a modern country. The problem of drought in northeastern Brazil gave the professionals performance, within an interventional process more mounts, the conception plans and measures for the purposeful integration of the territory afflicted. With the foundation of Inspetoria de Obras Contra as Secas (IOCS), in 1909, the actions to combat drought and would be institutionalized, them, studies performed out by technical and scientific committees would be systematically applied in the Brazilian Northeast. So, This work was central objective understand the historical process inplantation of a whole infrastructure of modern character by professional technical and their consequences within the Northeast Geographic space, in specific, in the municipality of Acari in the State of Rio Grande do Norte, in the first half of the twentieth century. The politics of the government, through technical education and scientific engineers polytechnics, would emphasize, during the twentieth century, the building of dams, and irrigation canals, wells, railways, highways, between other elements, that would soon transform the physical space-northeast, specifically, the territory acariense. These works began to contribute to the setting of man backcountry their land, promote the regular practice of agriculture even in periods of drought and, the integration, especially, economic of territory acariense the other producing regions of Rio Grande do Norte and the Northeast as well as promoting the modification of the landscape of the world backcountry. These actions functioned as elements of modernity and progress that transformed the space by favoring by favoring the formation of urban networks (urban) in this space
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
Eletroestimulador funcional de oito canais com malha de realimentação utilizando Controlador Digital
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Pós-graduação em Engenharia Elétrica - FEIS