728 resultados para Usinas hidrelétricas


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Based on the possibility of real-time interaction with three-dimensional environments through an advanced interface, Virtual Reality consist in the main technology of this work, used in the design of virtual environments based on real Hydroelectric Plants. Previous to the process of deploying a Virtual Reality System for operation, three-dimensional modeling and interactive scenes settings are very importante steps. However, due to its magnitude and complexity, power plants virtual environments generation, currently, presents high computing cost. This work aims to present a methodology to optimize the production process of virtual environments associated with real hydroelectric power plants. In partnership with electric utility CEMIG, several HPPs were used in the scope of this work. During the modeling of each one of them, the techiniques within the methodologie were addressed. After the evaluation of the computional techniques presented here, it was possible to confirm a reduction in the time required to deliver each hydroelectrical complex. Thus, this work presents the current scenario about development of virtual hydroelectric power plants and discusses the proposed methodology that seeks to optimize this process in the electricity generation sector.

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O trabalho intitulado - Análise de programas de Educação Ambiental no licenciamento ambiental de usinas hidrelétricas no Rio Grande do Sul: um estudo de caso - busca fazer uma análise compreensiva, reflexiva e problematizadora das ações de Educação Ambiental realizadas durante o processo de licenciamento ambiental, como medidas mitigadoras e/ou compensatórias de impactos ambientais causados pela instalação/operação de empreendimentos hidrelétricos. O objeto de análise foi o Programa de Educação Ambiental da UHE São José, instalada no rio Ijuí, interior do estado. Utilizou-se o movimento recursivo e reflexivo para elaboração da pesquisa, onde a primeira fase foi composta pelo levantamento bibliográfico que serviu de base para as discussões propostas, e a segunda fase foi composta pela investigação do referido programa, tendo como corpus da pesquisa documentos e entrevistas, e utilizando-se da Análise Textual Discursiva (ATD) como metodologia de análise. Os resultados obtidos fazem refletir sobre a ocupação dos espaços do licenciamento ambiental por uma Educação Ambiental que vá além do simples cumprimento das leis e normas, mas que seja de fato integradora e participativa, e envolva o compromisso dos empreendedores, das comunidades atingidas e dos órgãos fiscalizadores, contribuindo com a gestão ambiental e a sustentabilidade dos locais em transformação.

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This work aims to develop optical sensors for temperature monitoring in hydroelectric power plant heat exchangers. The proposed sensors are based on the Fiber Bragg Gratings technology. First of all, a prototype with three sensors inscribed in a same fiber was developed. This fiber was then fixed to a conventional Pt100 sensor rod and inserted in a thermowell. The ensemble was then calibrated in a workbench, presenting a maximum combined uncertainty of 2,06 °C. The sensor was installed in one of the heat exchangers of the Salto Osório’s hydroelectric power plant. This power plant is situated in the Iguaçu river, at the Paraná state. Despite the satisfactory results, the sensor was improved to a second version. In this, fifteen optical Bragg sensors were inscribed in a same fiber. The fixation with a conventional sensor was no longer necessary, because the first version results comproved the efficiency and response time in comparison to a conventional sensor. For this reason, it was decided to position the fiber inside a stainless steel rod, due to his low thermal expansion coefficient and high corrosion immunity. The utilization of fifteen fiber Bragg gratings aims to improve the sensor spatial resolution. Therefore, measurements every ten centimeters with respect to the heat exchanger’s height are possible. This provides the generation of a thermal map of the heat exchanger’s surface, which can be used for determination of possible points of obstruction in the hydraulic circuit of the heat exchanger. The heat exchanger’s obstruction in hydroelectric power plants usually occur by bio-fouling, and has direct influence in the generator’s cooling system efficiency. The obtained results have demonstrated the feasibility in application of the optical sensors technology in hydroelectric power plants.

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Pós-graduação em Agronomia (Energia na Agricultura) - FCA

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Pós-graduação em Agronomia (Energia na Agricultura) - FCA

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Pós-graduação em História - FCLAS

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Pós-graduação em Agronomia (Energia na Agricultura) - FCA

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O objetivo do presente trabalho é analisar alguns determinantes dos problemas de saúde decorrentes da implantação de hidrelétricas na Amazônia, tendo como referência a Hidrelétrica de Tucuruí, localizada no estado do Pará, Brasil. O presente artigo apresenta diferentes concepções sobre o processo saúde-doença; além de analisar as etapas de implantação de projetos hidrelétricos ressaltando alguns riscos para a saúde da população. A autora conclui o trabalho ressaltando que o setor elétrico não deve deteriorar o quadro sanitário e que sejam feitos investimentos em saúde em todas as etapas desses projetos para minimizar os efeitos deletérios sobre a saúde da população.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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The crescent increasing demand of the electric power in Brazil has stimulated the implantation of Small Central Hydroelectric Power (SCHP) in several regions of the country. However, the silting up of the reservoirs is one of the main problems faced by hydroelectric power plants and SCHP. In this context, this research aimed evaluate the phenomenology and propose the enforcement of appropriate bioengineering techniques to control the intense erosive process of the hydrographical basin of the “Alto Rio Sucuriú,” that cause silting up of the reservoirs of the SCHP Costa Rica, located in the municipal district of Costa Rica (MS). In order to identify the phenomenology of the main falling in of this basin, a diagnosis of the conditions of the physical environment of the region (climate, geology, pedology, hydrology, and use of the ground) was realized. A surveying was also realized to specify the geometric feature of the falling in using the Total Station of the Ruide brand, series RTS 860R and the geodetic GPS of the Ashtech brand and the data obtained was used on the preparation of the Digital Elevation Model (DEM) of the falling in. Based on this diagnosis an official register of the falling in was done with identification of the different types of present erosion. Due to the advanced erosive stage of the falling in researched, the use of bioengineering techniques could be the best solution considering that the traditional engineering techniques make use of heavy material like concrete, iron and large machines that besides causing higher impact to the natural and esthetic aspects of the environment also require a higher investment of capital. This research establish a great cooperation to the knowledge of the erosive process and of the rehabilitation of the degraded areas with application of bioengineering techniques not only hydrographical basin of “Alto Rio Sucuriú” but also to other basins that show similar situation