817 resultados para Energia elétrica, custo, Brasil


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The insertion of distributed generation units in the electric power systems have contributed to the popularization of microgrid concepts. With the microgrids, several potential benefits can be achieved in regard to power quality and supply reliability. However, several technical challenges related to the control and operation of microgrids, which are associated with high insertion of generation systems based on static converters, must be overcame. Among the opportunities in the context of microgrids, there is the islanded operation of microgrids temporarily disconnected from the electric power systems and also the autonomous operation of geographically isolated microgrids. The frequency in large power systems is traditionally controlled by the generation units based on traditional synchronous generator. The insertion of distributed generation units based on static power converters may bring difficulties to the frequency control in microgrids, due to the reduction of the equivalent inertia of conventional synchronous generators present in islanded and isolated microgrids. In this context, it becomes necessary the proposition of new operational and control strategies for microgrids control, taking into account the presence of distributed generation units based on full-rated converter. This paper proposes an operational and control strategy for the islanded operation of a winddiesel microgrid with high insertion level of wind generation. The microgrid adopted in this study comprises of a wind energy conversion system with synchronous generator based on full rated converter, a diesel generator (DIG) and a dump load. Due to the high insertion level of wind generation, the wind unit operates in Vf mode and the diesel generator operates in PQ mode. The diesel generator and the dump load are used to regulate the DC-link voltage of the wind generation unit. The proposed control allows the islanded operation of the microgrid only with wind generation, wind-only mode (WO), and with wind-diesel generation, wind-diesel mode (WD). For the wind-only mode, with 100% of penetration level of wind generation, it is proposed a DC-link voltage control loop based on the use of a DC dump load. For the winddiesel mode, it is proposed a DC-link voltage control loop added to the diesel generator, which is connected to the AC side of the microgrid, in coordinated action with the dump load. The proposed operational and control strategy does not require the use of batteries and aims to maximize the energy production from wind generation, ensuring the uninterrupted operation of the microgrid. The results have showed that the operational and control strategy allowed the stable operation of the islanded microgrid and that the DC-link voltage control loop added to the diesel generator and the dump load proved to be effective during the typical variations of wind speed and load.

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Dissertação (mestrado)—Universidade de Brasília, Departamento de Geografia, Programa de Pós-Graduação em Geografia, 2015.

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Dissertação (mestrado)—Universidade de Brasília, Instituto de Geociências, 2015.

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Tese (doutorado)—Universidade de Brasília, Centro de Desenvolvimento Sustentável, 2015.

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Fuel cells are electrochemical devices that convert chemical energy in electrical energy by a reaction directly. The solid oxide fuel cell (SOFC) works in temperature between 900ºC up to 1000ºC, Nowadays the most material for ceramic electrolytes is yttria stabilized zirconium. However, the high operation temperature can produce problems as instability and incompatibility of materials, thermal degradation and high cost of the surround materials. These problems can be reduced with the development of intermediate temperature solid oxide fuel cell (IT-SOFC) that works at temperature range of 600ºC to 800ºC. Ceria doped gadolinium is one of the most promising materials for electrolytes IT-SOFC due high ionic conductivity and good compatibility with electrodes. The inhibition of grain growth has been investigated during the sintering to improve properties of electrolytes. Two-step sintering (TSS) is an interesting technical to inhibit this grain growth and consist at submit the sample at two stages of temperature. The first one stage aims to achieve the critical density in the initiating the sintering process, then the sample is submitted at the second stage where the temperature sufficient to continue the sintering without accelerate grain growth until to reach total densification. The goal of this work is to produce electrolytes of ceria doped gadolinium by two-step sintering. In this context were produced samples from micrometric and nanometric powders by two routes of two-step sintering. The samples were obtained with elevate relative density, higher than 90% using low energy that some works at the same area. The average grain size are at the range 0,37 μm up to 0,51 μm. The overall ionic conductivity is 1,8x10-2 S.cm and the activation energy is 0,76 eV. Results shown that is possible to obtain ceria-doped gadolinium samples by two-step sintering technique using modified routes with characteristics and properties necessary to apply as electrolytes of solid oxide fuel cell

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Dissertação de Mestrado, Engenharia Elétrica e Eletrónica, Especialização em Sistemas de Energia e Controlo, Instituto Superior de Engenharia, Universidade do Algarve, 2016

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O trabalho se refere a um estudo sobre a industrialização, a dinâmica territorial e as implicações socioambientais em Três Lagoas/MS. O Parque Industrial decorre do processo de (des)concentração/(re)concentração industrial, no Brasil. Há intensa dinâmica territorial, que se dá a partir do processo industrial, que se circunscreve em três Distritos Industriais. Analisaram-se a estrutura e a dinâmica industrial, bem como os conflitos estabelecidos entre as forças produtivas. Também se avaliaram as alterações decorrentes da incorporação de tecnologia, produtividade e os reflexos no uso e ocupação das terras no campo. Ainda averiguou-se se há riscos de contaminação pelas indústrias, seja pela contaminação das águas subterrâneas e do solo, seja pela emissão de gases na atmosfera, os quais foram avaliados com vista à elaboração de um plano de redução dos riscos de eventos perigosos e contaminação ambiental. No Distrito Industrial I, há 22 empresas, sendo 11 ligadas a construção civil, de baixa periculosidade, e, perigosas destacam-se 3 metalúrgicas, uma química, uma de plástico e uma carvoaria. No Distrito Industrial II, concentram-se 27 empresas, destas apenas 3, a de alimentos, bebidas e de construção civil não são perigosas. Destacando-se dentre a perigosas, 8 indústrias têxteis, 6 metalúrgicas e 6 petroquímicas. O Distrito Industrial III situa-se fora do núcleo urbano, e se destina às megaindústrias: fábricas de papel e celulose, - consórcio Fibria/Internacional Paper - e uma de fertilizantes da Petrobras. As indústrias do Distrito Industrial II contam com aparato tecnológico mais avançado, isto é, coadunam as novas tecnologias do atual período técnico-científico e os incentivos fiscais – doação de terreno, isenções de impostos - com o aparato de objetos espaciais que o município oferece - vias intermodais, energia elétrica, e, a possibilidade da exploração da força de trabalho com baixos salários. Esses empreendimentos promoveram nova dinâmica territorial, criando novos sentidos e funções, impondo novos valores e cultura, inclusive os estilos de moradia, pois a expansão da periferia da cidade agora, não dá lugar somente aos conjuntos habitacionais populares, mas também aos luxuosos condomínios horizontais fechados; além do aumento da opção de moradias em condomínios horizontais. A paisagem urbana se metamorfoseia, pois a territorialização do capital industrial delineia novas territorialidades, a cidade ganha ares de cidade grande.