3 resultados para Power take-off

em Repositório Institucional da Universidade de Aveiro - Portugal


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A grande motivação para este trabalho resultou na avaliação da vulnerabilidade sísmica das escolas básicas e secundárias que fazem parte integrante do parque escolar de Portugal Continental. Apesar de até ao momento apenas se terem estudado a vulnerabilidade de algumas escolas em algumas zonas particulares do nosso país, para este trabalho de investigação tivemos uma ambição muito maior e obviamente fizemos um esforço muito maior. Estabelecemos assim como meta, a avaliação de todo o parque escolar. Embora todo o parque escolar possua na ordem das três centenas de escolas em todo o território nacional e sendo este projeto de reabilitação, um projeto com a duração de 2007 a 2015. Em 2011, por motivos da crise económica, todo o projeto congelou sendo reabilitadas até à data cerca de apenas um terço das escolas. Esta quantidade foi o número de escolas que avaliamos em todo o país. As escolas, sendo edifícios públicos com uma importância fundamental, tanto pela elevada concentração de jovens, como pela função essencial como centros de aprendizagem para as gerações vindouras, como também pela ameaça que representam na eventualidade dum cenário sísmico pela enorme densidade de utilizadores, e pela vantagem de nesse cenário de catástrofe a importância estrutural ser superior em relação à maior parte dos edifícios correntes, devidamente demonstrado pelos argumentos enumerados, consequentemente as escolas podem servir como instalações de proteção civil perante uma catástrofe sísmica para apoio das populações circundantes afetadas. Portanto para cada uma das escolas cordialmente fornecidas pelo Parque Escolar, E.P.E., foi feito um estudo exaustivo e muito individual de cada uma das escolas, onde cada análise foi desenvolvida por uma metodologia simplificada, sendo cada análise sempre individual, e nunca tendo sida aplicada em série, este fator melhora substancialmente a eficácia da avaliação para a quantificação das vulnerabilidades e da determinação do grau de dano e das frações de perda para os requisitos fundamentais de limitação de danos, de não colapso, e de colapso iminente que correspondem a ações com períodos de retorno de 95, 475 e 975 anos. Este trabalho é fundamental para as entidades competentes terem a consciência da vulnerabilidade das escolas secundárias, para puderem atuar a nível estrutural e diminuir assim a vulnerabilidade sísmica, e mesmo que por impossibilidade económica o poder governamental não intervenha, então pode e principalmente deve, elaborar planos de emergência tanto com engenheiros civis qualificados como com a total colaboração das corporações de bombeiros que fazem parte das forças de operação e socorro da Autoridade Nacional de Proteção Civil (ANPC).

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Worldwide air traffic tends to increase and for many airports it is no longer an op-tion to expand terminals and runways, so airports are trying to maximize their op-erational efficiency. Many airports already operate near their maximal capacity. Peak hours imply operational bottlenecks and cause chained delays across flights impacting passengers, airlines and airports. Therefore there is a need for the opti-mization of the ground movements at the airports. The ground movement prob-lem consists of routing the departing planes from the gate to the runway for take-off, and the arriving planes from the runway to the gate, and to schedule their movements. The main goal is to minimize the time spent by the planes during their ground movements while respecting all the rules established by the Ad-vanced Surface Movement, Guidance and Control Systems of the International Civil Aviation. Each aircraft event (arrival or departing authorization) generates a new environment and therefore a new instance of the Ground Movement Prob-lem. The optimization approach proposed is based on an Iterated Local Search and provides a fast heuristic solution for each real-time event generated instance granting all safety regulations. Preliminary computational results are reported for real data comparing the heuristic solutions with the solutions obtained using a mixed-integer programming approach.

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The PhD project addresses the potential of using concentrating solar power (CSP) plants as a viable alternative energy producing system in Libya. Exergetic, energetic, economic and environmental analyses are carried out for a particular type of CSP plants. The study, although it aims a particular type of CSP plant – 50 MW parabolic trough-CSP plant, it is sufficiently general to be applied to other configurations. The novelty of the study, in addition to modeling and analyzing the selected configuration, lies in the use of a state-of-the-art exergetic analysis combined with the Life Cycle Assessment (LCA). The modeling and simulation of the plant is carried out in chapter three and they are conducted into two parts, namely: power cycle and solar field. The computer model developed for the analysis of the plant is based on algebraic equations describing the power cycle and the solar field. The model was solved using the Engineering Equation Solver (EES) software; and is designed to define the properties at each state point of the plant and then, sequentially, to determine energy, efficiency and irreversibility for each component. The developed model has the potential of using in the preliminary design of CSPs and, in particular, for the configuration of the solar field based on existing commercial plants. Moreover, it has the ability of analyzing the energetic, economic and environmental feasibility of using CSPs in different regions of the world, which is illustrated for the Libyan region in this study. The overall feasibility scenario is completed through an hourly analysis on an annual basis in chapter Four. This analysis allows the comparison of different systems and, eventually, a particular selection, and it includes both the economic and energetic components using the “greenius” software. The analysis also examined the impact of project financing and incentives on the cost of energy. The main technological finding of this analysis is higher performance and lower levelized cost of electricity (LCE) for Libya as compared to Southern Europe (Spain). Therefore, Libya has the potential of becoming attractive for the establishment of CSPs in its territory and, in this way, to facilitate the target of several European initiatives that aim to import electricity generated by renewable sources from North African and Middle East countries. The analysis is presented a brief review of the current cost of energy and the potential of reducing the cost from parabolic trough- CSP plant. Exergetic and environmental life cycle assessment analyses are conducted for the selected plant in chapter Five; the objectives are 1) to assess the environmental impact and cost, in terms of exergy of the life cycle of the plant; 2) to find out the points of weakness in terms of irreversibility of the process; and 3) to verify whether solar power plants can reduce environmental impact and the cost of electricity generation by comparing them with fossil fuel plants, in particular, Natural Gas Combined Cycle (NGCC) plant and oil thermal power plant. The analysis also targets a thermoeconomic analysis using the specific exergy costing (SPECO) method to evaluate the level of the cost caused by exergy destruction. The main technological findings are that the most important contribution impact lies with the solar field, which reports a value of 79%; and the materials with the vi highest impact are: steel (47%), molten salt (25%) and synthetic oil (21%). The “Human Health” damage category presents the highest impact (69%) followed by the “Resource” damage category (24%). In addition, the highest exergy demand is linked to the steel (47%); and there is a considerable exergetic demand related to the molten salt and synthetic oil with values of 25% and 19%, respectively. Finally, in the comparison with fossil fuel power plants (NGCC and Oil), the CSP plant presents the lowest environmental impact, while the worst environmental performance is reported to the oil power plant followed by NGCC plant. The solar field presents the largest value of cost rate, where the boiler is a component with the highest cost rate among the power cycle components. The thermal storage allows the CSP plants to overcome solar irradiation transients, to respond to electricity demand independent of weather conditions, and to extend electricity production beyond the availability of daylight. Numerical analysis of the thermal transient response of a thermocline storage tank is carried out for the charging phase. The system of equations describing the numerical model is solved by using time-implicit and space-backward finite differences and which encoded within the Matlab environment. The analysis presented the following findings: the predictions agree well with the experiments for the time evolution of the thermocline region, particularly for the regions away from the top-inlet. The deviations observed in the near-region of the inlet are most likely due to the high-level of turbulence in this region due to the localized level of mixing resulting; a simple analytical model to take into consideration this increased turbulence level was developed and it leads to some improvement of the predictions; this approach requires practically no additional computational effort and it relates the effective thermal diffusivity to the mean effective velocity of the fluid at each particular height of the system. Altogether the study indicates that the selected parabolic trough-CSP plant has the edge over alternative competing technologies for locations where DNI is high and where land usage is not an issue, such as the shoreline of Libya.