20 resultados para NUMERICAL STABILITY
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Biophysical Chemistry 110 (2004) 83–92
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Passage of high-speed trains may induce high ground and track vibrations, which, besides increasing wheel, rail and track deterioration, may have a negative impact on the vehicle stability and on the passengers comfort. In this paper two distinct analyses are presented. The first one is dedicated to efficient decoupling of rail and soil vibrations by suggesting new interface materials in rail-sleeper fixing system, i.e. in the part where damping efficiency can be directly controlled and tested. The second analysis concerns with an adequate model of soils damping. Proper understanding and correct numerical simulation of this behaviour can help in suggesting soil improvement techniques.
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Void formation during the injection phase of the liquid composite molding process can be explained as a consequence of the non-uniformity of the flow front progression. This is due to the dual porosity within the fiber perform (spacing between the fiber tows is much larger than between the fibers within in a tow) and therefore the best explanation can be provided by a mesolevel analysis, where the characteristic dimension is given by the fiber tow diameter of the order of millimeters. In mesolevel analysis, liquid impregnation along two different scales; inside fiber tows and within the open spaces between the fiber tows must be considered and the coupling between the flow regimes must be addressed. In such cases, it is extremely important to account correctly for the surface tension effects, which can be modeled as capillary pressure applied at the flow front. Numerical implementation of such boundary conditions leads to illposing of the problem, in terms of the weak classical as well as stabilized formulation. As a consequence, there is an error in mass conservation accumulated especially along the free flow front. A numerical procedure was formulated and is implemented in an existing Free Boundary Program to reduce this error significantly.
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Proceedings of the Institution of Civil Engineers - Water Management 163 Issue WM6
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Dissertation presented to obtain a Ph.D degree in Engineering and Technology Sciences, Gene Therapy at the Instituto de Tecnologia Quimica e Biológica, Universidade Nova de Lisboa
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Journal of Proteome Research (2006)5: 2720-2726
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Febs Journal (2009)276:1776-1786
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RESUMO: Introdução/Objectivo: A influência dos factores psicossociais, e nomeadamente da catastrofização da dor, na percepção da intensidade da dor e na incapacidade funcional, auto-reportada por indivíduos com dor crónica cervical (DCC), tem sido alvo de estudo em vários países, evidenciando o constructo multidimensional da DCC. Neste sentido, esta investigação pretende estudar se a catastrofização da dor, é uma variável preditiva relativamente à percepção da intensidade da dor, e à incapacidade funcional. Secundariamente procurou-se averiguar se as relações encontradas se mantêm estáveis antes e após exposição a uma intervenção em fisioterapia. Metodologia: Neste estudo participaram 40 indivíduos com DCC de origem músculo-esquelética e causa não traumática, que foram expostos a uma intervenção em fisioterapia no Centro de Medicina de Reabilitação do Alcoitão e na Clinica AlcaisFisio, que cumpriram os critérios de inclusão e aceitarem participar livremente no mesmo. A recolha de dados realizou-se em dois momentos distintos, antes e após exposição à intervenção em fisioterapia. A catastrofização da dor foi avaliada por meio da Escala de Catastrofização da Dor (PCS), a intensidade da dor pela Escala Numérica da Dor (END), sendo realizada a medição da incapacidade funcional através do Neck Disability Index versão Portuguesa (NDI-PT). A análise estatística incluiu duas fases: fase descritiva e fase inferencial. Foram desenvolvidos modelos de regressão linear com vista a testar o poder preditivo da catastrofização da dor sobre a intensidade da dor e a incapacidade funcional. O nível de significância para o qual os valores se consideraram satisfatórios foi de p<0,05. O tratamento dos dados foi realizado no software PASW versão 18. Resultados: Observou-se que existe uma relação moderada, positiva e significativa, nos dois momentos de avaliação, entre a catastrofização da dor e a percepção da intensidade da dor (p<0,001), apresentando um poder preditivo de 27,9% e 46,7%, das pontuações da intensidade da dor, antes e após exposição à intervenção em fisioterapia, espectivamente. Observou-se que a catastrofização da dor tem uma relação forte, positiva e significativa com a incapacidade funcional, nos dois momentos de avaliação (p<0,001), predizendo 51,8% e 61,8%, das pontuações da incapacidade funcional, antes e após exposição à intervenção em fisioterapia, respectivamente. Conclusão: A catastrofização da dor é um factor psicossocial que apresenta relação moderada com a percepção da intensidade da dor, e forte com a incapacidade funcional auto-reportada por indivíduos com DCC de origem músculo-esquelética e causa não traumática, antes e após exposição à intervenção em fisioterapia. Os resultados do estudo sugerem, assim, uma importante influência da catastrofização da dor sobre a percepção da intensidade da dor e a incapacidade funcional em indivíduos com DCC, realçando o constructo multidimensional da DCC. ------------ABSTRACT: Background and Purpose: The influence of psychosocial factors, particularly, the pain catastrophizing, on pain intensity and functional disability in individuals with chronic neck pain (CNP) has been report among recent research literature. The first aim of this research was to verify the predictive value of pain catastrophizing on pain intensity and patient’s functional disability. Secondly it aimed to verify the stability of these relations before and after a physiotherapy treatment. Methodology: A sample of 40 subjects with CNP of musculoskeletal and non-traumatic causes was recruited from the patient’s list of two private clinics in Lisbon district following verification of the inclusion criteria. All participants agree to participate in the study and signed a consent form. Data was collected immediately before and after a period of physiotherapy treatment. Pain catastrophizing was assessed by the Pain Catastrophizing Scale (PCS-PT), patient perception of pain intensity was measured by the Numerical Rating Scale (NRS), and functional disability was measured through the Neck Disability Index (NDI-PT). Data was analyzed through descriptive and inferential statistics. Linear regression models were developed in order to test the predictive power of pain catastrophizing on pain intensity and functional disability. The minimal level of significance established was p<0,05. Data analysis was performed using the software PASW version 18. Results: A positive moderate relationship between pain catastrophizing and pain intensity was founded in both moments, before and after physiotherapy intervention, of data collection (p<0,001) with a predictive power of 27,9% and 46,7%, respectively. A positive strong relationship between pain catastrophizing and functional disability was founded in both moments, before and after physiotherapy intervention, of data collection (p<0,001), with a predictive power of 51,8% and 61,8%, respectively. Conclusion: Pain catastrophizing is a psychosocial factor that is correlated moderately with the perception of pain intensity and strongly with self-reported functionaldisability for individuals with CNP musculoskeletal origin and non-traumatic causes,before and after a physiotherapy intervention. The results of this study suggest that pain catastrophizing has an important influence on the report levels of pain intensity and functional disability in CNP patients. These results also emphasize the multidimensional nature of chronic neck pain.
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Dissertation to obtain a Master Degree in Biotechnology
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Dissertação para obtenção do Grau de Mestre em Engenharia do Ambiente, perfil Engenharia Sanitária
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Dissertation presented to obtain the PhD degree in Biochemistry
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Dissertação apresentada para obtenção do Grau de Doutor em Engenharia do Ambiente, pela Universidade Nova de Lisboa, Faculdade de Ciências e Tecnologia
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21st Annual Conference of the International Group for Lean Construction – IGLC 21 – Fortaleza, Brazil
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Dissertation presented to obtain the Ph.D degree in Biochemistry
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In this thesis, a predictive analytical and numerical modeling approach for the orthogonal cutting process is proposed to calculate temperature distributions and subsequently, forces and stress distributions. The models proposed include a constitutive model for the material being cut based on the work of Weber, a model for the shear plane based on Merchants model, a model describing the contribution of friction based on Zorev’s approach, a model for the effect of wear on the tool based on the work of Waldorf, and a thermal model based on the works of Komanduri and Hou, with a fraction heat partition for a non-uniform distribution of the heat in the interfaces, but extended to encompass a set of contributions to the global temperature rise of chip, tool and work piece. The models proposed in this work, try to avoid from experimental based values or expressions, and simplifying assumptions or suppositions, as much as possible. On a thermo-physical point of view, the results were affected not only by the mechanical or cutting parameters chosen, but also by their coupling effects, instead of the simplifying way of modeling which is to contemplate only the direct effect of the variation of a parameter. The implementation of these models was performed using the MATLAB environment. Since it was possible to find in the literature all the parameters for AISI 1045 and AISI O2, these materials were used to run the simulations in order to avoid arbitrary assumption.