938 resultados para Mathematical model


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Third stage larvae (L3) from Angiostrongylus costaricensis were incubated in water at room temperature and at 5 ° C and their mobility was assessed daily for 17 days. Viability was associated with the mobility and position of the L3, and it was confirmed by inoculation per os in albino mice. The number of actively moving L3 sharply decreased within 3 to 4 days, but there were some infective L3 at end of observation. A mathematical model estimated 80 days as the time required to reduce the probability of infective larvae to zero. This data does not support the proposition of refrigerating vegetables and raw food as an isolated procedure for prophylaxis of human abdominal angiostrongylosis infection.

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Este trabalho pretende resolver o problema das alocações de salas a exames no Departamento de Engenharia Mecânica do Instituto Superior de Engenharia do Porto. A solução desenvolvida atribui salas a exames respeitando as restrições de capacidade de salas e a restrição de realização dum único exame por sala num determinado período, por forma a minimizar a atribuição de salas e, consequentemente, docentes a exames. Foi criado um modelo matemático, que representa as variáveis relevantes do problema, e realiza a sua implementação numa plataforma informática amigável para o utilizador. O modelo matemático foi validado comparando as suas soluções com as obtidas através do processo manual. Os resultados do novo método demonstram a sua supremacia relativamente ao modelo atual. No futuro, poderá ser estudada a possibilidade de usar esta ferramenta na resolução do mesmo problema em realidades diferentes da do Departamento de Engenharia Mecânica do ISEP.

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Na presente dissertação é proposto o desenvolvimento de um novo sistema de calibração de roscados de exteriores através de visão computacional. A calibração de roscados de exterior consiste na obtenção do diâmetro efectivo, do diâmetro exterior e do passo, e no cálculo da incerteza expandida correspondente. Actualmente, a calibração é efectuada com o auxílio de máquinas universais (SIP), na qual o diâmetro efectivo é obtido através de um modelo matemático, pois não se consegue obtê-lo directamente. O sistema de calibração por visão computacional tem como objectivo obter-se o diâmetro efectivo directamente, assim como as restantes características. A vantagem deste novo sistema será para roscados com dimensões inferiores a 2 mm, que não se conseguem medir utilizando a SIP. A desvantagem é referente a diâmetros superiores a 2 mm, devido à resolução obtida com a câmara utilizada. Este sistema foi validado por comparação com a calibração utilizando como equipamento calibrador a SIP. Ao longo da dissertação irão ser explicados todos os passos dados para a calibração de roscados de exterior.

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It is known that the fibrous structure of muscle causes light scattering. This phenomenon occurs due to the refractive index discontinuities located between muscle fibers and interstitial fluid. To study the possibility of reducing light scattering inside muscle, we consider its spectral transmittance evolution during an immersion treatment with an optical clearing solution containing ethanol, glycerol, and distilled water. Our methodology consists of registering spectral transmittance of muscle samples while immersed in that solution. With the spectral data collected, we represent the transmittance evolution for some wavelengths during the treatment applied. Additionally, we study the variations that the treatment has caused on the samples regarding tissue refractive index and mass. By analyzing microscopic photographs of tissue cross section, we can also verify changes in the internal arrangement of muscle fibers caused by the immersion treatment. Due to a mathematical model that we develop, we can explain the variations observed in the studied parameters and estimate the amount of optical clearing agent that has diffused into the tissue samples during the immersion treatment. At the end of the study, we observe and explain the improvement in tissue spectral transmittance, which is approximately 65% after 20 min.

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The external forces applied in swimming starts have been often studied, but using direct analysis and simple interpretation data processes. This study aimed to develop a tool for vertical and horizontal force assessment based on the swimmers' propulsive and structural forces (passive forces due to dead weight) applied during the block phase. Four methodological pathways were followed: the experimented fall of a rigid body, the swimmers' inertia effect, the development of a mathematical model to describe the outcome of the rigid body fall and its generalization to include the effects of the inertia, and the experimental swimmers' starting protocol analysed with the inclusion of the developed mathematical tool. The first three methodological steps resulted in the description and computation of the passive force components. At the fourth step, six well-trained swimmers performed three 15 m maximal grab start trials and three-dimensional (3D) kinetic data were obtained using a six degrees of freedom force plate. The passive force contribution to the start performance obtained from the model was subtracted from the experimental force due to the swimmers resulting in the swimmers' active forces. As expected, the swimmers' vertical and horizontal active forces accounted for the maximum variability contribution of the experimental forces. It was found that the active force profile for the vertical and horizontal components resembled one another. These findings should be considered in clarifying the active swimmers' force variability and the respective geometrical profile as indicators to redefine steering strategies.

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Standarização de um posto de trabalho não é mais que definir o melhor método de trabalho que vai ser seguido por todos os operadores que trabalham no mesmo. Uma vez definido esse método, é importante para uma empresa ter noção da produtividade que podem alcançar, dado que pode ser retirado a partir deste método, e é no seguimento disto que surge o estudo dos métodos e tempos, mais concretamente o estudo dos tempos por cronometragem. A aplicação deste estudo foi despoletada pela necessidade do IKEA Industry de Paços de Ferreira, em dar o próximo passo na standarização dos seus postos de trabalho, área a área, e da necessidade de terem uma pessoa em cada área que analisa-se o trabalho que estava a ser feito e calcula-se o tempo de cada rotina. Neste documento, é realizada uma interligação entre os conceitos teóricos que o método exige, como todo o conjunto de fórmulas, restrições, análises e ponderações, com o contexto laboral onde o mesmo foi aplicado e a estratégia desenvolvida pelo IKEA na realização do estudo. O estudo dos métodos e tempos por cronometragem, de todos os métodos existentes, pode ser considerado o mais completo e complexo, uma vez que é mais que observar, registar e retirar uma média ponderada das observações. Este método baseia-se num modelo matemático, que interliga uma série de conceitos e que tem sempre o operador em consideração, seja na avaliação e análise das tarefas que requerem mais esforço dos mesmos, físico ou psicológico, seja em termos de tempos de pausas pessoais que a lei obriga a que as empresas deem. Este detalhe, neste método, é de grande importância, uma vez que a standarização é sempre vista pelos operadores como uma punição. As desvantagens deste método estão no grau de conhecimento e capacidade de observação exigidas ao analista para o executar. Melhor dizendo, um analista que vá executar este trabalho necessita observar muito bem a rotina de trabalho e conhecer onde começa, acaba e tudo o que a ela não pertence, antes de começar a registar seja que tempos forem. Para além disso, é exigido ao analista que perceba o ritmo de trabalho dos operadores através da observação dos mesmos, de modo a que ninguém seja prejudicado. E por fim, é necessária uma grande disponibilidade da parte do analista para retirar o máximo de observações possíveis. Com o intuito de facilitar esta análise, o IKEA Industry criou um ficheiro que compila toda a informação relacionada com o método, e uma explicação de todos os parâmetros que o analista necessita ter em atenção. Esta folha de trabalho foi validada à luz do método, como é possível verificar no decorrer do documento. Um detalhe importante a referir, é que por muito fidedigno que seja este método, tal como qualquer método de standarização, a mínima alteração da rotina de trabalho invalida de imediato o tempo total da rotina, tornando necessário realizar o estudo novamente. Uma vantagem do documento criado pelo IKEA, está na rápida adaptação a estas alterações, uma vez que, caso seja acrescentado ou removido um elemento à rotina, basta alterar o documento, observar e cronometrar os operadores a executar esse novo elemento, e quase automaticamente é definido um novo tempo total padronizado na rotina. Este documento foi criado para fins académicos e de conclusão de um grau académico, mas o estudo quando aplicado na empresa deu origem a contratações, o que só por si mostra as vantagens e impacto que o mesmo pode ter em contexto laboral. Em termos de produtividade, uma vez que a sua aplicação não foi executada a tempo de ser estudada neste documento, não foi possível avaliar a mesma.

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Dissertação para obtenção do Grau de Doutor em Engenharia Química e Bioquímica

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A potentially renewable and sustainable source of energy is the chemical energy associated with solvation of salts. Mixing of two aqueous streams with different saline concentrations is spontaneous and releases energy. The global theoretically obtainable power from salinity gradient energy due to World’s rivers discharge into the oceans has been estimated to be within the range of 1.4-2.6 TW. Reverse electrodialysis (RED) is one of the emerging, membrane-based, technologies for harvesting the salinity gradient energy. A common RED stack is composed by alternately-arranged cation- and anion-exchange membranes, stacked between two electrodes. The compartments between the membranes are alternately fed with concentrated (e.g., sea water) and dilute (e.g., river water) saline solutions. Migration of the respective counter-ions through the membranes leads to ionic current between the electrodes, where an appropriate redox pair converts the chemical salinity gradient energy into electrical energy. Given the importance of the need for new sources of energy for power generation, the present study aims at better understanding and solving current challenges, associated with the RED stack design, fluid dynamics, ionic mass transfer and long-term RED stack performance with natural saline solutions as feedwaters. Chronopotentiometry was used to determinate diffusion boundary layer (DBL) thickness from diffusion relaxation data and the flow entrance effects on mass transfer were found to avail a power generation increase in RED stacks. Increasing the linear flow velocity also leads to a decrease of DBL thickness but on the cost of a higher pressure drop. Pressure drop inside RED stacks was successfully simulated by the developed mathematical model, in which contribution of several pressure drops, that until now have not been considered, was included. The effect of each pressure drop on the RED stack performance was identified and rationalized and guidelines for planning and/or optimization of RED stacks were derived. The design of new profiled membranes, with a chevron corrugation structure, was proposed using computational fluid dynamics (CFD) modeling. The performance of the suggested corrugation geometry was compared with the already existing ones, as well as with the use of conductive and non-conductive spacers. According to the estimations, use of chevron structures grants the highest net power density values, at the best compromise between the mass transfer coefficient and the pressure drop values. Finally, long-term experiments with natural waters were performed, during which fouling was experienced. For the first time, 2D fluorescence spectroscopy was used to monitor RED stack performance, with a dedicated focus on following fouling on ion-exchange membrane surfaces. To extract relevant information from fluorescence spectra, parallel factor analysis (PARAFAC) was performed. Moreover, the information obtained was then used to predict net power density, stack electric resistance and pressure drop by multivariate statistical models based on projection to latent structures (PLS) modeling. The use in such models of 2D fluorescence data, containing hidden, but extractable by PARAFAC, information about fouling on membrane surfaces, considerably improved the models fitting to the experimental data.

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Many conditions are associated with hyperglycemia in preterm neonates because they are very susceptible to changes in carbohydrate homeostasis. The purpose of this study was to evaluate the occurrence of hyperglycemia in preterm infants undergoing glucose infusion during the first week of life, and to enumerate the main variables predictive of hyperglycemia. This prospective study (during 1994) included 40 preterm neonates (gestational age <37 weeks); 511 determinations of glycemic status were made in these infants (average 12.8/infant), classified by gestational age, birth weight, glucose infusion rate and clinical status at the time of determination (based on clinical and laboratory parameters). The clinical status was classified as stable or unstable, as an indication of the stability or instability of the mechanisms governing glucose homeostasis at the time of determination of blood glucose; 59 episodes of hyperglycemia (11.5%) were identified. A case-control study was used (case = hyperglycemia; control = normoglycemia) to derive a model for predicting glycemia. The risk factors considered were gestational age (<=31 vs. >31 weeks), birth weight (<=1500 vs. >1500 g), glucose infusion rate (<=6 vs. >6 mg/kg/min) and clinical status (stable vs. unstable). Multivariate analysis by logistic regression gave the following mathematical model for predicting the probability of hyperglycemia: 1/exp{-3.1437 + 0.5819(GA) + 0.9234(GIR) + 1.0978(Clinical status)} The main predictive variables in our study, in increasing order of importance, were gestational age, glucose infusion rate and, the clinical status (stable or unstable) of the preterm newborn infant. The probability of hyperglycemia ranged from 4.1% to 36.9%.

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Electric Vehicles (EVs) are increasingly used nowadays, and different powertrain solutions can be adopted. This paper describes the control system of an axial flux Permanent Magnet Synchronous Motor (PMSM) for EVs powertrain. It is described the implemented Field Oriented Control (FOC) algorithm and the Space Vector Modulation (SVM) technique. Also, the mathematical model of the PMSM is presented. Both, simulation and experimental, results with different types of mechanical load are presented. The experimental results were obtained using a laboratory test bench. The obtained results are discussed.

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Dissertação de mestrado em Bioinformática

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In this work we provide a new mathematical model for the Pennes’ bioheat equation, assuming a fractional time derivative of single order. Alternative versions of the bioheat equation are studied and discussed, to take into account the temperature-dependent variability in the tissue perfusion, and both finite and infinite speed of heat propagation. The proposed bioheat model is solved numerically using an implicit finite difference scheme that we prove to be convergent and stable. The numerical method proposed can be applied to general reaction diffusion equations, with a variable diffusion coefficient. The results obtained with the single order fractional model, are compared with the original models that use classical derivatives.

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In this work we develop a new mathematical model for the Pennes’ bioheat equation assuming a fractional time derivative of single order. A numerical method for the solu- tion of such equations is proposed, and, the suitability of the new model for modelling real physical problems is studied and discussed

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The effect of varying separator membrane physical parameters such as degree of porosity, tortuosity and thickness, on battery delivered capacity was studied in order to optimize performance of lithium-ion batteries. This was achieved by a theoretical mathematical model relating the Bruggeman coefficient with the degree of porosity and tortuosity. The inclusion of the separator membrane in the simulation model of the battery system does not affect the delivered capacity of the battery. The ionic conductivity of the separator and consequently the delivered capacity values obtained at different discharge rates depends on the value of the Bruggeman coefficient, which is related with the degree of porosity and tortuosity of the membrane. Independently of scan rate, the optimal value of the degree of porosity is above 50% and the separator thickness should range between 1 μm at 32 μm for improved battery performance.

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A new integrated mathematical model for the simulation of an offshore wind system having a rectifier input voltage malfunction at one phase is presented in this paper. The mathematical model considers an offshore variable-speed wind turbine on a floating platform, equipped with a permanent magnet synchronous generator using full-power three-level converter to inject energy into the electric network, through a high voltage direct current transmission submarine cable. The model for the drive train is a discrete three mass, incorporating the dynamic of the moving surface. A case study is presented to access conclusion about the malfunction.