999 resultados para ENERGIA SOLAR FOTOVOLTAICA
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Este projecto toma partido do Regulamento das Características de Comportamento Térmico dos Edifícios (RCCTE), tendo por base uma obrigatoriedade legal imposta a nível nacional e europeu, que funciona como um “benchmark”. Desta forma contribui-se para uma utilização racional da energia, que passa a ser encarada como uma necessidade fundamental para um futuro economicamente sustentável e mais limpo, tendo em conta que os índices de dependência energética terão que diminuir (sustentabilidade), mas com a preocupação e o cuidado de preservar o conforto térmico. O aquecimento de águas para o consumo doméstico – águas quentes sanitárias (AQS) – é nos dias que correm um bem indispensável e de utilização generalizada para a vida e bem-estar de todos nós. O RCCTE permite avaliar o impacto das necessidades de energia para AQS nas necessidades globais de energia primária, com base em parâmetros (e.g., Esolar) que foram estudados neste trabalho, para demonstrar o real impacte associado à introdução de sistemas solares térmicos. Neste trabalho a contribuição da energia solar térmica foi estudada recorrendo a um programa de cálculo desenvolvido e validado pelo autor (Matlab) e ao programa Solterm, tendo sido analisados dois casos distintos com aplicações de sistemas solares térmicos, e um estudo económico de forma a garantir a viabilidade da implementação destes sistemas.
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Pós-graduação em Química - IQ
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This paper is about a case study of using solar energy and wind energy in a farm. For this purpose were collected from the property, such as water consumption and amount of residents. So, we estimate how many conventional panels or PET bottle panels and boiler needed to supply the farm with warm water. It also calculates the amount of photovoltaic panels and the main accessories for converting solar energy into electrical energy. For the pumping of water using photovoltaic panels is dismissed and dimensioned to be a watermill
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This work presents the development of the External Lighting Plan UNESP in the Itapeva Campus based LED and Solar Energy. Firstly it was made a collection of data from measurements of the local transit through the Google Earth 6 software and divide the local in sectors, and then perform an analysis of characteristics and age of the site. With these data it was possible to determine the average luminance the place, in30 lux. After these procedures was possible to determine the type of sets that would perform the role of bridge lighting the kit chosen was the 20/20 Sun LED manufacturer, since it contains the luminaire with the solar panel to the pole. Therefore we determined the number of poles for each sector, whichwas72in total and. After the determination of the location of each point lighting
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Pós-graduação em Engenharia Mecânica - FEG
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Pós-graduação em Engenharia Mecânica - FEG
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This work presents a self-sustainable lighting system using ultracapacitor as a storage device, replacing the conventional battery, using solar energy as the only energy supplier. A detailed study of solar panels, switched mode converters and ultracapacitors was made, in order to design a circuit capable of capturing solar energy and transfer it efficiently to a bank of ultracapacitors. Later, at nighttime, this energy is used for lighting in LED luminaires which have high luminous efficiency and high reliability index. This work presents the design of the solar panel, ultracapacitors bank, the development of the voltage converter circuit and charger working at the maximum power point of the solar panel. All subsystems were simulated and it was shown that the use of ultracapacitors is feasible to feed a LED lamp with enough brightness for a person to walk at night, for two night shifts, using a capacitive bank with twenty-four ultracapacitors. Replacing the battery by an ultracapacitor allows a faster recharge, with low maintenance costs, since ultracapacitors have a lifetime bigger than batteries; beyond reducing the environmental impact, as they don't use potentially toxic chemical compounds
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This work presents a self-sustainable lighting system using ultracapacitor as a storage device, replacing the conventional battery, using solar energy as the only energy supplier. A detailed study of solar panels, switched mode converters and ultracapacitors was made, in order to design a circuit capable of capturing solar energy and transfer it efficiently to a bank of ultracapacitors. Later, at nighttime, this energy is used for lighting in LED luminaires which have high luminous efficiency and high reliability index. This work presents the design of the solar panel, ultracapacitors bank, the development of the voltage converter circuit and charger working at the maximum power point of the solar panel. All subsystems were simulated and it was shown that the use of ultracapacitors is feasible to feed a LED lamp with enough brightness for a person to walk at night, for two night shifts, using a capacitive bank with twenty-four ultracapacitors. Replacing the battery by an ultracapacitor allows a faster recharge, with low maintenance costs, since ultracapacitors have a lifetime bigger than batteries; beyond reducing the environmental impact, as they don't use potentially toxic chemical compounds
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Programa de doctorado: Sistemas Inteligentes y Aplicaciones Numéricas en la Ingeniería.