11 resultados para thermal cycling (TC)
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IEEE International Symposium on Circuits and Systems, pp. 232 – 235, Seattle, EUA
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Dissertação apresentada na Faculdade de Ciências e Tecnologia da Universidade Nova de Lisboa para a obtenção do grau de Mestre em Engenharia Electrotécnica e de Computadores
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Dissertação para obtenção do Grau de Mestre em Engenharia de Materiais
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Dissertação de Mestrado em Arte e Ciência do Vidro
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Dissertation submitted in partial fulfillment of the requirements for the Degree of Master of Science in Geospatial Technologies.
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Dissertação para obtenção do Grau de Mestre em Engenharia Química e Bioquímica
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Construction and Building Materials 49 (2013), 315-327
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Dissertation to obtain the degree of Doctor of Philosophy in Biomedical Engineering
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High reflective paints (cool paints) are used on flat roofs to reduce heat gains from the incidence of solar radiation and thus improve the thermal comfort and energy efficiency of buildings, especially in summer periods. Given the application potential of these paints on vertical surfaces, a research study has been developed to evaluate the thermal performance of reflective paints on walls under real exposure conditions. Accordingly, different reflective paints have been applied as the final coating of an ETICS type solution, on the facades of a full scale experimental cell built at LNEC campus. For being applied in an ETICS system a paint has to fulfill several requirements, whether aesthetic or functional (such as the adhesion between the coating layers or the durability of the insulation), essential for its efficient performance. Since this construction coating system is subject to a prolonged sun exposure, various problems may arise, such as paint degradation or deterioration of the thermal insulation properties, particularly when dark colors are applied. To evaluate the thermal performance of the chosen paints, the method of non-destructive analysis by Infrared Thermography was used. Thermography allows knowing the temperature distribution of facades by measuring the radiation emitted by their surfaces. To complement the thermographic diagnosis, thermocouples were placed between the insulation and the paint system of the experimental cell. Additional laboratory tests allowed the characterization of the optical properties (reflectance and emittance) of the different reflective paints used in this study. The comparative analysis of the thermal performance of reflective and conventional paints revealed that the reflective paint allows a reduction of the facade surface temperature, reducing the risk of loss of insulating properties of the ETICS system and thus ensuring its longevity and functionality. The color of the paint used affects, naturally, the reflective ability of the surface and may have an important role in energy balance of the building. This paper also showed the potential of infrared thermography in the evaluation of the thermal performance of reflective paints.
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With the projection of an increasing world population, hand-in-hand with a journey towards a bigger number of developed countries, further demand on basic chemical building blocks, as ethylene and propylene, has to be properly addressed in the next decades. The methanol-to-olefins (MTO) is an interesting reaction to produce those alkenes using coal, gas or alternative sources, like biomass, through syngas as a source for the production of methanol. This technology has been widely applied since 1985 and most of the processes are making use of zeolites as catalysts, particularly ZSM-5. Although its selectivity is not especially biased over light olefins, it resists to a quick deactivation by coke deposition, making it quite attractive when it comes to industrial environments; nevertheless, this is a highly exothermic reaction, which is hard to control and to anticipate problems, such as temperature runaways or hot-spots, inside the catalytic bed. The main focus of this project is to study those temperature effects, by addressing both experimental, where the catalytic performance and the temperature profiles are studied, and modelling fronts, which consists in a five step strategy to predict the weight fractions and activity. The mind-set of catalytic testing is present in all the developed assays. It was verified that the selectivity towards light olefins increases with temperature, although this also leads to a much faster catalyst deactivation. To oppose this effect, experiments were carried using a diluted bed, having been able to increase the catalyst lifetime between 32% and 47%. Additionally, experiments with three thermocouples placed inside the catalytic bed were performed, analysing the deactivation wave and the peaks of temperature throughout the bed. Regeneration was done between consecutive runs and it was concluded that this action can be a powerful means to increase the catalyst lifetime, maintaining a constant selectivity towards light olefins, by losing acid strength in a steam stabilised zeolitic structure. On the other hand, developments on the other approach lead to the construction of a raw basic model, able to predict weight fractions, that should be tuned to be a tool for deactivation and temperature profiles prediction.
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RESUMO - A exposição a radiações ionizantes em tomografia computorizada (TC) pode constituir-se como um risco para a saúde dos utentes. A TC é utilizada no diagnóstico e follow-up de doentes com Linfoma não-Hodgkin, subtipo Linfoma Difuso das Grandes Células B (LDGCB). O objetivo deste estudo foi determinar a dose efetiva acumulada e o risco de segundas neoplasias nestes doentes, diagnosticados em 2011 no IPOLFG e seguidos na consulta de hematologia até 2013. Foram avaliados retrospetivamente 70 doentes com base nos registos de dose do “Patient Protocol” das TC efetuadas. Em média cada doente fez 12 TC e a dose efetiva acumulada foi de 64,76 mSv (percentil 75). Três doentes foram expostos a doses de radiação superiores 90 mSv e um atingiu 111,72 mSv. Os resultados demonstram ser necessário rever os parâmetros e protocolos de exames de TC: (i) TC crânio (DLP= 777 mGycm) e TC abdominal-pélvico (DLP= 628 mGycm). O aumento do número de exames de TC efetuados e a consequente dose parece corresponder a um aumento do risco de segundas neoplasias e risco de morte por doenças neoplásicas durante a vida destes doentes. Os resultados são aparentemente mais significativos para as mulheres, que apresentam o dobro do risco de cancro do pulmão e risco de mortalidade superior em 14% para todas as doenças neoplásicas. O elevado número de exames de TC realizados por cada doente contribui para o aumento da probabilidade de efeitos deletérios e também para o aumento dos níveis de dose efetiva coletiva na população em geral.