917 resultados para Projeto de lei, análise, Brasil


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Variable reluctance motors have been increasingly used as an alternative for variable speed and high speed drives in many industrial applications, due to many advantages like the simplicity of construction, robustness, and low cost. The most common applications in recent years are related to aeronautics, electric and hybrid vehicles and wind power generation. This paper explores the theory, operation, design procedures and analysis of a variable reluctance machine. An iterative design methodology is introduced and used to design a 1.25 kW prototype. For the analysis of the machine two methods are used, an analytical method and the finite element simulation. The results obtained by both methods are compared. The results of finite element simulation are used to determine the inductance profiles and torque of the prototype. The magnetic saturation is examined visually and numerically in four critical points of the machine. The data collected in the simulation allow the verification of design and operating limits for the prototype. Moreover, the behavior of the output quantities is analyzed (inductance, torque and magnetic saturation) by variation of physical dimensions of the motor. Finally, a multiobjective optimization using Differential Evolution algorithms and Genetic Algorithms for switched reluctance machine design is proposed. The optimized variables are rotor and stator polar arcs, and the goals are to maximize the average torque, the average torque per copper losses and the average torque per core volume. Finally, the initial design and optimized design are compared.

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In recent years the photovoltaic generation has had greater insertion in the energy mix of the most developed countries, growing at annual rates of over 30%. The pressure for the reduction of pollutant emissions, diversification of the energy mix and the drop in prices are the main factors driving this growth. Grid tied systems plays an important role in alleviating the energy crisis and diversification of energy sources. Among the grid tied systems, building integrated photovoltaic systems suffers from partial shading of the photovoltaic modules and consequently the energy yield is reduced. In such cases, classical forms of modules connection do not produce good results and new techniques have been developed to increase the amount of energy produced by a set of modules. In the parallel connection technique of photovoltaic modules, a high voltage gain DC-DC converter is required, which is relatively complex to build with high efficiency. The current-fed isolated converters explored in this work have some desirable characteristics for this type of application, such as: low input current ripple and input voltage ripple, high voltage gain, galvanic isolation, feature high power capacity and it achieve soft switching in a wide operating range. This study presents contributions to the study of a high gain and high efficiency DC-DC converter for use in a parallel system of photovoltaic generation, being possible the use in a microinverter or with central inverter. The main contributions of this work are: analysis of the active clamping circuit operation proposing that the clamp capacitor connection must be done on the negative node of the power supply to reduce the input current ripple and thus reduce the filter requirements; use of a voltage doubler in the output rectifier to reduce the number of components and to extend the gain of the converter; detailed study of the converter components in order to raise the efficiency; obtaining the AC equivalent model and control system design. As a result, a DC-DC converter with high gain, high efficiency and without electrolytic capacitors in the power stage was developed. In the final part of this work the DC-DC converter operation connected to an inverter is presented. Besides, the DC bus controller is designed and are implemented two maximum power point tracking algorithms. Experimental results of full system operation connected to an emulator and subsequently to a real photovoltaic module are also given.

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A self-flotator vibrational prototype electromechanical drive for treatment of oil and water emulsion or like emulsion is presented and evaluated. Oil production and refining to obtain derivatives is carried out under arrangements technically referred to as on-shore and off-shore, ie, on the continent and in the sea. In Brazil 80 % of the petroleum production is taken at sea and area of deployment and it cost scale are worrisome. It is associated, oily water production on a large scale, carrier 95% of the potential pollutant of activity whose final destination is the environment medium, terrestrial or maritime. Although diversified set of techniques and water treatment systems are in use or research, we propose an innovative system that operates in a sustainable way without chemical additives, for the good of the ecosystem. Labyrinth adsor-bent is used in metal spirals, and laboratory scale flow. Equipment and process patents are claimed. Treatments were performed at different flow rates and bands often monitored with control systems, some built, other bought for this purpose. Measurements of the levels of oil and grease (OGC) of efluents treaty remained within the range of legal framework under test conditions. Adsorbents were weighed before and after treatment for obtaining oil impregna-tion, the performance goal of vibratory action and treatment as a whole. Treatment technolo-gies in course are referenced, to compare performance, qualitatively and quantitatively. The vibration energy consumption is faced with and without conventional flotation and self-flotation. There are good prospects for the proposed, especially in reducing the residence time, by capillary action system. The impregnation dimensionless parameter was created and confronted with consecrated dimensionless parameters, on the vibrational version, such as Weber number and Froude number in quadratic form, referred to as vibrational criticality. Re-sults suggest limits to the vibration intensity

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Propõe o 'desenvolvimento de uma metodologia para classificação de projetos de lei relacionados à saúde e a demonstração de sua utilidade por meio de sua aplicação no conjunto de projetos de lei ordinária apresentados em 2001'.

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Este trabalho busca compreender as atuais configurações dos livros infantojuvenis no mercado editorial, com a entrada na chamada era digital e o aumento crescente na produção de e-books por parte das editoras, ao mesmo tempo em que livros impressos ainda continuam sendo produzidos em larga escala e reinventados constantemente. Partindo do conceito de remediação (BOLTER e GRUSIN, 2000), procura-se descobrir por quais mudanças os livros impressos passaram ao longo dos anos, quais são suas novas configurações gráficas face à atual realidade digital, e com quais critérios esses livros estão sendo transformados em e-books. Para tal, foi feito um estudo de caso dos livros infantojuvenis de Monteiro Lobato, importante autor para a literatura brasileira, com uma análise comparativa da coleção do Sítio do Picapau Amarelo, em quatro edições (três impressas e uma digital) e três épocas diferentes (anos 1940, 1980 e 2000). Focando na parte gráfica e estética dos livros (que foi a parte que se alterou) e com a observação dos protocolos de leitura (CHARTIER, 2011) presentes nas diferentes edições, procura-se compreender as transformações pelas quais esses livros passaram ao longo dos anos, em decorrência do contexto sociocultural em que foram produzidos, além de suas atuais configurações no contexto da cultura da convergência (JENKINS, 2009). Após a análise realizada pôde-se perceber que talvez o processo de remediação no mercado editorial ainda não esteja tão presente quanto se pensava inicialmente, apesar de estar caminhando lentamente nessa direção.

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Comentários do Centro de Tecnologia e Sociedade da FGV Direito Rio ao Projeto de Lei 5.498/09, de iniciativa da Câmara dos Deputados, relativo a campanhas eleitorais, no que concerne aos dispositivos referentes ao uso da Internet em campanhas.