952 resultados para concentrator solar power


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Major in Competition and Regulation

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This paper analyses the boundaries of simplified wind turbine models used to represent the behavior of wind turbines in order to conduct power system stability studies. Based on experimental measurements, the response of recent simplified (also known as generic) wind turbine models that are currently being developed by the International Standard IEC 61400-27 is compared to complex detailed models elaborated by wind turbine manufacturers. This International Standard, whose Technical Committee was convened in October 2009, is focused on defining generic simulation models for both wind turbines (Part 1) and wind farms (Part 2). The results of this work provide an improved understanding of the usability of generic models for conducting power system simulations.

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A potentially renewable and sustainable source of energy is the chemical energy associated with solvation of salts. Mixing of two aqueous streams with different saline concentrations is spontaneous and releases energy. The global theoretically obtainable power from salinity gradient energy due to World’s rivers discharge into the oceans has been estimated to be within the range of 1.4-2.6 TW. Reverse electrodialysis (RED) is one of the emerging, membrane-based, technologies for harvesting the salinity gradient energy. A common RED stack is composed by alternately-arranged cation- and anion-exchange membranes, stacked between two electrodes. The compartments between the membranes are alternately fed with concentrated (e.g., sea water) and dilute (e.g., river water) saline solutions. Migration of the respective counter-ions through the membranes leads to ionic current between the electrodes, where an appropriate redox pair converts the chemical salinity gradient energy into electrical energy. Given the importance of the need for new sources of energy for power generation, the present study aims at better understanding and solving current challenges, associated with the RED stack design, fluid dynamics, ionic mass transfer and long-term RED stack performance with natural saline solutions as feedwaters. Chronopotentiometry was used to determinate diffusion boundary layer (DBL) thickness from diffusion relaxation data and the flow entrance effects on mass transfer were found to avail a power generation increase in RED stacks. Increasing the linear flow velocity also leads to a decrease of DBL thickness but on the cost of a higher pressure drop. Pressure drop inside RED stacks was successfully simulated by the developed mathematical model, in which contribution of several pressure drops, that until now have not been considered, was included. The effect of each pressure drop on the RED stack performance was identified and rationalized and guidelines for planning and/or optimization of RED stacks were derived. The design of new profiled membranes, with a chevron corrugation structure, was proposed using computational fluid dynamics (CFD) modeling. The performance of the suggested corrugation geometry was compared with the already existing ones, as well as with the use of conductive and non-conductive spacers. According to the estimations, use of chevron structures grants the highest net power density values, at the best compromise between the mass transfer coefficient and the pressure drop values. Finally, long-term experiments with natural waters were performed, during which fouling was experienced. For the first time, 2D fluorescence spectroscopy was used to monitor RED stack performance, with a dedicated focus on following fouling on ion-exchange membrane surfaces. To extract relevant information from fluorescence spectra, parallel factor analysis (PARAFAC) was performed. Moreover, the information obtained was then used to predict net power density, stack electric resistance and pressure drop by multivariate statistical models based on projection to latent structures (PLS) modeling. The use in such models of 2D fluorescence data, containing hidden, but extractable by PARAFAC, information about fouling on membrane surfaces, considerably improved the models fitting to the experimental data.

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UNL - NSBE

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An energy harvesting system requires an energy storing device to store the energy retrieved from the surrounding environment. This can either be a rechargeable battery or a supercapcitor. Due to the limited lifetime of rechargeable batteries, they need to be periodically replaced. Therefore, a supercapacitor, which has ideally a limitless number of charge/discharge cycles can be used to store the energy; however, a voltage regulator is required to obtain a constant output voltage as the supercapacitor discharges. This can be implemented by a Switched-Capacitor DC-DC converter which allows a complete integration in CMOS technology, although it requires several topologies in order to obtain a high efficiency. This thesis presents the complete analysis of four different topologies in order to determine expressions that allow to design and determine the optimum input voltage ranges for each topology. To better understand the parasitic effects, the implementation of the capacitors and the non-ideal effect of the switches, in 130 nm technology, were carefully studied. With these two analysis a multi-ratio SC DC-DC converter was designed with an output power of 2 mW, maximum efficiency of 77%, and a maximum output ripple, in the steady state, of 23 mV; for an input voltage swing of 2.3 V to 0.85 V. This proposed converter has four operation states that perform the conversion ratios of 1/2, 2/3, 1/1 and 3/2 and its clock frequency is automatically adjusted to produce a stable output voltage of 1 V. These features are implemented through two distinct controller circuits that use asynchronous time machines (ASM) to dynamically adjust the clock frequency and to select the active state of the converter. All the theoretical expressions as well as the behaviour of the whole system was verified using electrical simulations.

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Os polímeros são materiais de grande interesse científico e tecnológico já que podem ser utilizados no desenvolvimento de dispositivos para aplicação em electrónica e fotónica. Tendo em conta a sua aplicação em dispositivos de conversão de energia solar em energia eléctrica, o estudo das propriedades eléctricas e ópticas de filmes destes materiais, quando irradiados por radiação ultravioleta e visível, é fundamental. Neste trabalho caracterizaram-se as propriedades eléctricas e ópticas de filmes finos obtidos pelas técnicas de derramamento e de camada-por-camada (Layer-by-Layer (LbL)) obtidos a partir do poli(cloreto de xilideno tetrahidrotiofeno) (PTHT) que após aquecimento é convertido em poli(p-fenileno vinileno) (PPV). Assim, e através da técnica de derramamento, foram preparados filmes sobre suportes sólidos com eléctrodos interdigitais de forma a proceder à medição da condutividade em modo de corrente alternada (AC), isto é, à medição da resistência e da capacidade em função da frequência. Verificou-se, portanto, que a presença de luz leva à formação de portadores de carga, ou seja, na presença de luminosidade os filmes apresentam uma menor capacitância e resistência, para além de degradar o material. Esta degradação foi verificada, também, a partir da espectrofotometria de Ultravioleta-Visível (UV-Vis) e de infravermelho (IV). Medições de condutividade de volume, isto é, colocando os filmes entre eléctrodos paralelos de funções de trabalho diferentes, permitiram traçar as curvas características e verificar que os dispositivos obtidos se comportam como díodos. Recorreu-se, também, a técnicas de espectrofotometria de ultravioleta do vácuo (VUV) e UV-Vis para caracterizar filmes LbL obtidos a partir do PTHT e de um polieletrólito comum o poli(estireno sulfonado) (PSS) antes e após aquecimento. Os espectros obtidos, após análise dos picos, mostram que a técnica de VUV é a técnica indicada para analisar a conversão do PTHT em PPV. Este trabalho permitiu concluir que as propriedades eléctricas e ópticas destes filmes, estão dependentes da presença de luminosidade, de oxigénio e da humidade relativa pelo que dispositivos obtidos a partir deste polímero devem ser, sempre, encapsulados.

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Introduction Schistosomiasis is a parasitic disease of public health concern in Brazil, and the construction of hydroelectric dams, in addition to increasing permanent human settlement and tourism, has created conditions suitable for the establishment of mollusks that can transmit schistosomiasis. Such areas require a number of actions to prevent the establishment of schistosomiasis. This paper reports on a freshwater malacological survey carried out in the geographical area of the Manso Power Plant. Methods Mollusks were collected in 18 municipalities in the State of Mato Grosso between February 2002 and February 2004 (qualitative study) and from April 2009 to February 2011 (quantitative study). Results Thirty-one species of mollusks were collected, including newly recorded species (Antillorbis nordestensis and Burnupia ingae). In addition, the geographic distributions of known species, including Biomphalaria straminea, a snail vector of Schistosoma mansoni, were expanded. A total of 4,507 specimens were collected in the APM Manso reservoir (Usina Hidrelétrica de Aproveitamento Múltiplo de Manso) during the quantitative study, and Biomphalaria amazonica was found in six of the 10 localities analyzed. The Afroasiatic species Melanoides tuberculata, introduced after February 2009, was the dominant species (relative abundance 94.96%). Conclusions The study area is epidemiologically important due to the occurrence of B. straminea and B. amazonica, which are vectors of schistosomiasis, and M. tuberculata, a snail host of Centrocestus formosanus, which is responsible for centrocestiasis transmission. Observations of M. tuberculata and the exotic freshwater clams Corbicula fluminea and Corbicula largillierti raise concerns about biodiversity.

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Os polímeros são materiais de grande interesse científico e tecnológico já que podem ser utilizados no desenvolvimento de dispositivos para aplicação em electrónica e fotónica. Tendo em conta a sua aplicação em dispositivos de conversão de energia solar em energia eléctrica, o estudo das propriedades eléctricas e ópticas de filmes destes materiais, quando irradiados por radiação ultravioleta e visível, é fundamental. Neste trabalho caracterizaram-se as propriedades eléctricas e ópticas de filmes finos obtidos pelas técnicas de derramamento e de camada-por-camada (Layer-by-Layer (LbL)) obtidos a partir do poli(cloreto de xilideno tetrahidrotiofeno) (PTHT) que após aquecimento é convertido em poli(p-fenileno vinileno) (PPV). Assim, e através da técnica de derramamento, foram preparados filmes sobre suportes sólidos com eléctrodos interdigitais de forma a proceder à medição da condutividade em modo de corrente alternada (AC), isto é, à medição da resistência e da capacidade em função da frequência. Verificou-se, portanto, que a presença de luz leva à formação de portadores de carga, ou seja, na presença de luminosidade os filmes apresentam uma menor capacitância e resistência, para além de degradar o material. Esta degradação foi verificada, também, a partir da espectrofotometria de Ultravioleta-Visível (UV-Vis) e de infravermelho (IV). Medições de condutividade de volume, isto é, colocando os filmes entre eléctrodos paralelos de funções de trabalho diferentes, permitiram traçar as curvas características e verificar que os dispositivos obtidos se comportam como díodos. Recorreu-se, também, a técnicas de espectrofotometria de ultravioleta do vácuo (VUV) e UV-Vis para caracterizar filmes LbL obtidos a partir do PTHT e de um polieletrólito comum o poli(estireno sulfonado) (PSS) antes e após aquecimento. Os espectros obtidos, após análise dos picos, mostram que a técnica de VUV é a técnica indicada para analisar a conversão do PTHT em PPV. Este trabalho permitiu concluir que as propriedades eléctricas e ópticas destes filmes, estão dependentes da presença de luminosidade, de oxigénio e da humidade relativa pelo que dispositivos obtidos a partir deste polímero devem ser, sempre, encapsulados.

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Apesar do elevado potencial do metal magnésio como material útil em várias áreas cien-tíficas e tecnológicas, os seus métodos de produção tradicionais têm um impacto fortemente prejudicial no ambiente e um custo elevado. Este facto é um incentivo à procura de novas so-luções, nomeadamente as que recorrem à utilização da radiação solar partindo do óxido de magnésio. Alguns estudos têm já sido feitos nesse sentido, utilizando laser solar ou radiação solar concentrada mas a utilização concertada dos dois não tinha sido feita até ao momento. Neste trabalho, a exequibilidade da utilização concertada destes dois métodos será avaliada e será estudado o comportamento do óxido de magnésio face à radiação que nele incide.

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Este trabalho consistiu no estudo técnico-económico (dimensionamento) de uma central térmica solar de torre norte, com back-up a biomassa (pellets) para produção de energia elétrica. A partir da plataforma PVGIS obteve-se a irradiação normal direta, DNI, da região do Alentejo, Portugal, segundo critérios descritos na secção 3.1. O valor anual obtido foi de 2319 !"ℎ/%&, valor este que foi convertido em energia elétrica, obtendo-se, assim, um montante de 105.761.800 kWh por ano, em 25 anos. Estas importâncias foram obtidas através dos equipamentos que constituem a central, entre eles o campo solar (composto por 2067 helióstatos com área total de 188097 %&), a torre (convertendo a concentração da DNI para energia térmica ao fluído de transferência de calor, HTF), o bloco de potência (composta por permutador de calor, turbina, gerador elétrico e outros) e com ajuda de uma caldeira a biomassa (pellets) que consome cerca de 24.001,23 toneladas de pellets por ano. O estudo económico foi realizado num modelo executável no Excel, calculando, assim, o custo total do sistema, 138.515.886,87 €. A partir deste valor calcularam-se os indicadores económicos (Valor Atualizado Líquido, VAL=-12.282540,28 €) com uma tarifa bonificada de 0,22114 €/kWh, que indica que o sistema termo solar com back-up a biomassa (pellets) não é viável economicamente (e o mesmo acontece com o sistema termo solar sem a biomassa). O dimensionamento técnico do sistema CSP de torre é feito a partir de um modelo matemático executado em Excel e MatLab e pelo software System Advisor Model, SAM e o da caldeira a pellets é concretizado também no Excel. Os resultados do modelo matemático foram comparados com os valores obtidos no SAM para o mês típico de julho comprovando, assim, as fórmulas e conceitos contidos no estado da arte. Realizou-se, também, uma comparação dos valores anuais do sistema obtidos no SAM com os valores reais da Gemasolar (em Espanha), demonstrando então a veracidade dos valores obtidos no dimensionamento feito para Portugal.

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This thesis provides an alternative framework to analyze power and ethics practiced in everyday conversations, which constitute processes of organizing. Drawing upon narrative frameworks, the analyses of messages posted on an online message board demonstrate people’s imaginative capacity to create relevant stories, in respect of their precise grasp of factual understandings, contextual relevance and evaluative/moral appropriateness, by appropriating others’ words. Based on the empirical analyses, the thesis indicates that studies on power and ethics in organizations can be re-oriented towards appreciating irremediable power imbalances by offering alternative ways of member’s denoting experiences of power.

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Nature has developed strategies to present us with a wide variety of colours, from the green of leaves to the bright colours seen in flowers. Anthocyanins are between these natural pigments that are responsible for the great diversity of colours seen in flowers and fruits. Anthocyanins have been used to sensitize titanium dioxide (TiO2) in Dye-Sensitized Solar Cells (DSSCs). DSSCs have become one of the most popular research topic in photovoltaic cells due to their low production costs when compared to other alternatives. DSSCs are inspired in what happens in nature during photosynthesis. A primary charge separation is achieved by means of a photoexcited dye capable of performing the electron injection into the conduction band of a wide band-gap semiconductor, usually TiO2. With this work we aimed to synthesize a novel mesoporous TiO2 structure as the semiconductor in order to increase the dye loading. We used natural occurring dyes such as anthocyanins and their synthetic flavylium relatives, as an alternative to the widely used metal complexes of Ru(II) which are expensive and are environmentally unsafe. This offers not only the chance to use safer dyes for DSSCs, but also to take profit of waste biological products, such as wine and olive oil production residues that are heavily loaded with anthocyanin dyes. We also performed a photodegradation study using TiO2 as the catalyst to degrade dye contaminants, such as those from the wine production waste, by photo-irradiation of the system in the visible region of the light spectrum. We were able to succeed in the synthesis of mesoporous TiO2 both powder and thin film, with a high capacity to load a large amount of dye. We proved the concept of photodegradation using TiO2 as catalyst. And finally, we show that wine production waste is a possible dye source to DSSCs application.

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Cylindrical specimens of bone measuring 15 mm in diameter were obtained from the lateral cortical layer of 10 pairs of femurs and tibias. A central hole 3.2 mm in diameter was drilled in each specimen. The hole was tapped, and a 4.5 mm cortical bone screw was inserted from the outer surface. The montage was submitted to push-out testing up to a complete strip of the bone threads. The cortical thickness and rupture load were measured, and the shear stress was calculated. The results were grouped according to the bone segment from which the specimen was obtained. The results showed that bone cortex screw holding power is dependent on the bone site. Additionally, the diaphyseal cortical bone tissue is both quantitatively and qualitatively more resistant to screw extraction than the metaphyseal tissue.

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Scarcity of fuels, changes in environmental policy and in society increased the interest in generating electric energy from renewable energy sources (RES) for a sustainable energy supply in the future. The main problem of RES as solar and wind energy, which represent a main pillar of this transition, is that they cannot supply constant power output. This results inter alia in an increased demand of backup technologies as batteries to assure electricity system safety. The diffusion of energy storage technologies is highly dependent on the energy system and transport transition pathways which might lead to a replacement or reconfiguration of embedded socio-technical practices and regimes (by creating new standards or dominant designs, changing regulations, infrastructure and user patterns). The success of this technology is dependent on hardly predictable future technical advances, actor preferences, development of competing technologies and designs, diverging interests of actors, future cost efficiencies, environmental performance, the evolution of market demand and design and evolution of our society.