96 resultados para Voos Suborbitais


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Dissertação para obtenção do grau de Mestre no Instituto Superior de Ciências da Saúde Egas Moniz

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Since the creation of supersonic vehicles, during the Second World War, the engineers have given special attention to the interaction between the aerodynamic efforts and the structures of the aircrafts due to a highly destructive phenomenon called flutter in aeronautical panel. Flutter in aeronautical panels is a self-excited aeroelastic phenomenon, which can occurs during supersonic flights due to dynamic instability of inertia, elastic and aerodynamic forces of the system. In the flutter condition, when the critical aerodynamic pressure is reached, the vibration amplitudes of the panel become dynamically unstable and increase exponentially with time, affecting significantly the fatigue life of the existing aeronautical components. Thus, in this paper, the interest is to investigate the possibility of reducing the effects of the supersonic aeroelastic instability of rectangular plates by applying passive constrained viscoelastic layers. The rationale for such study is the fact that as the addition of viscoelastic materials provides decreased vibration amplitudes it becomes important to quantify the suppression of plate flutter coalescence modes that can be obtained. Moreover, despite the fact that much research on the suppression of panel flutter has been carried out by using passive, semi-active and active control techniques, very few of them are adapted to deal with the problem of estimating the flutter speeds of viscoelastic systems, since they must conveniently account for the frequency- and temperature-dependent behavior of the viscoelastic material. In this context, two different model of viscoelastic material are developed and applied to the model of sandwich plate by using finite elements. After the presentation of the theoretical foundations of the methodology, the description of a numerical study on the flutter analysis of a three-layer sandwich plate is addressed.

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Dissertação (mestrado)—Universidade de Brasília, Departamento de Geografia, Programa de Pós-Graduação em Geografia, 2016.

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Resumo Helicoverpa armigera (Hübner, 1808) (Lepidoptera: Noctuidae) é um inseto exótico, altamente polífago, que foi detectado no Brasil em 2013 causando sérios danos em cultivos de soja, milho e algodão, localizados em áreas estaduais específicas das regiões Nordeste e Centro-Oeste com a presença do bioma Cerrado. Após o período de um ano o inseto foi identificado em várias regiões do País. A literatura indica que o inseto adulto apresenta características físicas que favorecem sua grande capacidade de voo, tanto em distância (100-1000 km) quanto a elevadas altitudes (maiores que 1,5 km acima do nível do solo), aumentando o seu potencial para dispersão de longo alcance, principalmente por voos migratórios das áreas já atacadas. Por essa razão, as massas de ar brasileiras podem atuar como potenciais facilitadoras à atividade migratória do inseto a longas distâncias para as áreas de maior concentração de seus cultivos hospedeiros preferenciais, resultante da atração natural do inseto aos fatores químicos delas decorrentes. Desse modo, devem ser consideradas em avaliações de áreas mais propícias à presença de H. armigera para orientar monitoramentos e estratégias de manejo locais. Este trabalho avaliou a potencial migração de H. armigera por massas de ar para áreas produtoras de cultivos hospedeiros do estado de São Paulo, considerando seus municípios produtores de algodão, soja, milho, tomate, feijão, café e laranja; as principais massas de ar brasileiras; a presença de grandes áreas com cultivos de eucalipto e pinus (outras potenciais barreiras físicas ao inseto); e a localização do bioma Cerrado paulista. Informações das áreas produtoras e das áreas plantadas por município de 2008, 2012 e 2014, disponibilizadas pelo IBGE, foram utilizadas em planos de informação georreferenciados, elaborados em ArcGis 10.3, para identificar a localização de suas respectivas grandes áreas em cada ano. O cruzamento georreferenciado também resultou mapas das áreas plantadas em 2014 com todos os cultivos citados, indicando as de maior potencial de infestação/reinfestações de H. armigera no estado de São Paulo, para orientar monitoramentos e estratégias de Manejo Integrado de Pragas - MIP locais. Abstract Helicoverpa armigera (Hübner, 1808) (Lepidoptera: Noctuidae) is an exotic insect highly polyphagous, which was detected in Brazil in 2013 causing serious damage to soybean, corn and cotton crops located in specific state areas in the northeast and center-west regions with the presence of Cerrado Biome (similar to the Savannah). After a oneyear period, the insect was detected in several regions of the country. Foreign literature indicates that the adult phase of the insect shows certain physical characteristics which favor its great flight capacity, even related to reach long distances (100-1000 Km) as many as to reach high altitudes (overtaken 1.5 Km above the ground level), increasing its potential of farthest dispersion, mainly by migratory flights from the areas already attacked. Therefore, the Brazilian air masses may act as potentially enhance the insect's farthest migratory activity to areas of greater concentration of its preferential host crops due to the insect's natural attraction to their chemical factors. Thus, migration potential of H. armigera by air masses toward preferential host crop areas must be considered in evaluations of most favorable areas to the presence of the insect to guide monitoring and local management strategies. The present work evaluated the H. armigera migration potential by air masses toward producing areas of host crops in São Paulo state, Brazil, considering its municipalities producing cotton, soybean, corn, tomato, bean, coffee, orange, eucalyptus and pine trees, as well as the main Brazilian air masses and the presence of Cerrado Biome in the state. Information of producing and of planting areas with the annual crops by municipalities in 2008, 2012 and 2014, provided by IBGE, were used in cross-maps made using ArcGis 10.3, in order to identify the location of their respective greater areas in each year. Cross-maps also provided results indicating the planting areas in 2014 with all crops already mentioned, as well as the potential areas to infestation/reinfestations of H. armigera in São Paulo State, in order to guide monitoring and local strategies of IPM.

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This Ph.D. project aimed to the development and improvement of analytical solutions for control of quality and authenticity of virgin olive oils. According to this main objective, different research activities were carried out: concerning the quality control of olive oil, two of the official parameters defined by regulations (free acidity and fatty acid ethyl esters) were taken into account, and more sustainable and easier analytical solutions were developed and validated in-house. Regarding authenticity, two different issues were faced: verification of the geographical origin of extra virgin (EVOOs) and virgin olive oils (VOOs), and assessment of soft-deodorized oils illegally mixed with EVOOs. About fatty acid ethyl esters, a revised method based on the application of off-line HPLC-GC-FID (with PTV injector), revising both the preparative phase and the GC injector required in the official method, was developed. Next, the method was in-house validated evaluating several parameters. Concerning free acidity, a portable system suitable for in-situ measurements of VOO free acidity was developed and in-house validated. Its working principle is based on the estimation of the olive oil free acidity by measuring the conductance of an emulsion between a hydro-alcoholic solution and the sample to be tested. The procedure is very quick and easy and, therefore, suitable for people without specific training. Another study developed during the Ph.D. was about the application of flash gas chromatography for volatile compounds analysis, combined with untargeted chemometric data elaborations, for discrimination of EVOOs and VOOs of different geographical origin. A set of 210 samples coming from different EU member states and extra-EU countries were collected and analyzed. Data were elaborated applying two different classification techniques, one linear (PLS-DA) and one non-linear (ANN). Finally, a preliminary study about the application of GC-IMS (Gas Chromatograph - Ion Mobility Spectrometer) for assessment of soft-deodorized olive oils was carried out.

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At the beginning, this Ph.D. project led to an overview of the most common and emerging types of fraud and possible countermeasures in the olive oil sector. Furthermore, possible weaknesses in the current conformity check system for olive oil were highlighted. Among those, despite the organoleptic assessment is a fundamental tool for establishing the virgin olive oils (VOOs) quality grade, the scientific community has evidenced some drawbacks in it. In particular, the application of instrumental screening methods to support the panel test could reduce the work of sensory panels and the cost of this analysis (e.g. for industries, distributors, public and private control laboratories), permitting the increase in the number and the efficiency of the controls. On this basis, a research line called “Quantitative Panel Test” is one of the main expected outcomes of the OLEUM project that is also partially discussed in this doctoral dissertation. In this framework, analytical activities were carried out, within this PhD project, aimed to develop and validate analytical protocols for the study of the profiles in volatile compounds (VOCs) of the VOOs headspace. Specifically, two chromatographic approaches, one targeted and one semi-targeted, to determine VOCs were investigated in this doctoral thesis. The obtained results, will allow the possible establishment of concentration limits and ranges of selected volatile markers, as related to fruitiness and defects, with the aim to support the panel test in the commercial categorization of VOOs. In parallel, a rapid instrumental screening method based on the analysis of VOCs has been investigated to assist the panel test through a fast pre-classification of VOOs samples based on a known level of probability, thus increasing the efficiency of quality control.