998 resultados para Pesquisa computacional


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A elaboração de um projeto de obra de edificação é fruto da interação entre profissionais de diversas disciplinas desenvolvendo, simultaneamente, suas opções e decisões com relação ao mesmo. É necessário considerar a qualidade do processo de elaboração do projeto dependente de uma efetiva comunicação entre os membros da equipe. A indústria da construção civil está sendo beneficiada pelos recursos oferecidos pela tecnologia da informação como, por exemplo, os sistemas colaborativos (extranets de projeto). Estes sistemas corroboram na integração e comunicação entre os membros de um projeto. O objetivo da presente pesquisa foi a apresentação do desenvolvimento de modelo validado de ferramenta computacional projetada para complementar um sistema colaborativo pré-existente. Esta ferramenta foi denominada Sistema de Programação e Controle do Processo de Projeto (SIPROCON/PP). A finalidade do SIPROCON/PP é auxiliar no processo de tomada de decisão dos coordenadores através do monitoramento do cronograma e do fluxo do intercâmbio de informações das atividades geradoras de informações neste processo. O processo de desenvolvimento da ferramenta foi delineado em harmonia com a organização da pesquisa. Neste sentido, é assinalado o uso da prototipação e da simulação como estratégias de pesquisa, utilizados respectivamente na construção e validação do modelo da ferramenta. Ante a necessidade do experimento, foi criada uma atividade lúdica através da qual foi reproduzido o intercâmbio de informações de um processo de projeto denominada Sistemática de Simulação do Processo de Projeto (SS/PP) para validação do modelo da ferramenta. Logo, por meio do uso das simulações foram obtidos os dados correspondentes a validação da modelagem e aplicação do SIPROCON/PP e, ao mesmo tempo, necessários à conclusão da pesquisa. Diante disso, a partir da análise dos dados coletados é apontada a melhoria na qualidade do processo de elaboração do projeto considerando a formação de uma equipe equilibrada de projeto. Isso, fruto do conhecimento mais acurado do coordenador sobre o desempenho de cada projetista.

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Uma metodologia de modelagem para a exploração do espaço de projeto de processadores é apresentada. A exploração do espaço de projeto constitui uma das etapas do fluxo de projeto dos atuais processadores de alto desempenho e de sistemas embarcados, que auxilia os projetistas no tratamento da complexidade inerente ao processo contemporâneo de projeto de sistemas computacionais. A principal característica desta metodologia é um processo de modelagem simples e rápido. Isso é obtido através da disponibilização dos recursos de modelagem em camadas com propósitos e níveis de complexidade de uso diferenciados e da limitação do número de elementos (palavras-chave, classes e métodos) que devem ser conhecidos pelo projetista para o acesso a estes recursos, independentemente da camada na qual eles se encontram. A única exigência para o uso de tais recursos são conhecimentos que estudantes de Computação adquirem ao longo dos seus cursos da área de Computação e Informática. Outras características da metodologia de modelagem incluem: recursos específicos e distintos para a descrição da organização, da arquitetura e de aspectos temporais do processador; um estilo de descrição estrutural de alto nível da organização; a possibilidade de uso de recursos gráficos em tempo de modelagem e em tempo de simulação; e a existência de informações nos modelos que podem ser usadas para a tradução das descrições para uma Hardware Description Language Todas estas características constituem um conjunto de soluções de modelagem e simulação de processadores que não é encontrado em outros ambientes usados na exploração do espaço de projeto, baseados em Architecture Description Languages, Hardware Description Languages e ferramentas de simulação. Além disso, os modelos de processadores, desenvolvidos com esta metodologia, fornecem os recursos para a aceleração do aprendizado de conteúdos de arquitetura de computadores que só são encontrados em simuladores para ensino. Uma infra-estrutura de software que implementa a metodologia de modelagem foi desenvolvida e está disponível. Ela foi usada no ensino e no contexto da pesquisa para a modelagem e simulação de diversos processadores. Uma comparação com a metodologia de modelagem de uma Architecture Description Language demonstra a simplicidade e a rapidez do processo de modelagem previsto na metodologia apresentada.

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O objetivo deste trabalho de pesquisa foi investigar o desempenho de alunos que trabalharam com atividades de simulação e modelagem computacionais no estudo de circuitos elétricos, utilizando o software Modellus, comparado com alunos expostos apenas ao sistema tradicional de ensino. A fundamentação teórica adotada esteve baseada no referencial de trabalho de Halloun sobre modelagem esquemática e na teoria de Ausubel sobre aprendizagem significativa. O estudo envolveu 193 alunos de cursos de Engenharia, da disciplina de Física-II oferecida pela UFRGS no 2° semestre de 2004. O procedimento didático ocorreu em duas etapas. Na primeira, os alunos do grupo experimental trabalharam com um conjunto de atividades sobre circuitos elétricos simples durante cinco aulas e na etapa seguinte, com um conjunto de atividades sobre circuitos RLC durante quatro aulas. Cada aula teve duração de 1h40min. Os resultados quantitativos mostram que houve melhorias estatisticamente significativas no desempenho dos alunos do grupo experimental, quando comparado aos alunos dos grupos de controle, expostos apenas ao método tradicional de ensino. Os resultados de nossa análise qualitativa sugerem que muitos dos alunos atingiram uma aprendizagem significativa. Nossas observações e o levantamento de opiniões mostraram que o procedimento didático adotado exigiu muita interação dos alunos com as atividades computacionais, dos alunos entre si e com o professor, tornando-se um elemento motivador na aprendizagem dos alunos.

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LINS, Filipe C. A. et al. Modelagem dinâmica e simulação computacional de poços de petróleo verticais e direcionais com elevação por bombeio mecânico. In: CONGRESSO BRASILEIRO DE PESQUISA E DESENVOLVIMENTO EM PETRÓLEO E GÁS, 5. 2009, Fortaleza, CE. Anais... Fortaleza: CBPDPetro, 2009.

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This Masters Degree dissertation seeks to make a comparative study of internal air temperature data, simulated through the thermal computer application DesignBuilder 1.2, and data registered in loco through HOBO® Temp Data Logger, in a Social Housing Prototype (HIS), located at the Central Campus of the Federal University of Rio Grande do Norte UFRN. The prototype was designed and built seeking strategies of thermal comfort recommended for the local climate where the study was carried out, and built with panels of cellular concrete by Construtora DoisA, a collaborator of research project REPESC Rede de Pesquisa em Eficiência Energética de Sistemas Construtivos (Research Network on Energy Efficiency of Construction Systems), an integral part of Habitare program. The methodology employed carefully examined the problem, reviewed the bibliography, analyzing the major aspects related to computer simulations for thermal performance of buildings, such as climate characterization of the region under study and users thermal comfort demands. The DesignBuilder 1.2 computer application was used as a simulation tool, and theoretical alterations were carried out in the prototype, then they were compared with the parameters of thermal comfort adopted, based on the area s current technical literature. Analyses of the comparative studies were performed through graphical outputs for a better understanding of air temperature amplitudes and thermal comfort conditions. The data used for the characterization of external air temperature were obtained from the Test Reference Year (TRY), defined for the study area (Natal-RN). Thus the author also performed comparative studies for TRY data registered in the years 2006, 2007 and 2008, at weather station Davis Precision Station, located at the Instituto Nacional de Pesquisas Espaciais INPE-CRN (National Institute of Space Research), in a neighboring area of UFRN s Central Campus. The conclusions observed from the comparative studies performed among computer simulations, and the local records obtained from the studied prototype, point out that the simulations performed in naturally ventilated buildings is quite a complex task, due to the applications limitations, mainly owed to the complexity of air flow phenomena, the influence of comfort conditions in the surrounding areas and climate records. Lastly, regarding the use of the application DesignBuilder 1.2 in the present study, one may conclude that it is a good tool for computer simulations. However, it needs some adjustments to improve reliability in its use. There is a need for continued research, considering the dedication of users to the prototype, as well as the thermal charges of the equipment, in order to check sensitivity

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Natural air ventilation is the most import passive strategy to provide thermal comfort in hot and humid climates and a significant low energy strategy. However, the natural ventilated building requires more attention with the architectural design than a conventional building with air conditioning systems, and the results are less reliable. Therefore, this thesis focuses on softwares and methods to predict the natural ventilation performance from the point of view of the architect, with limited resource and knowledge of fluid mechanics. A typical prefabricated building was modelled due to its simplified geometry, low cost and occurrence at the local campus. Firstly, the study emphasized the use of computational fluid dynamics (CFD) software, to simulate the air flow outside and inside the building. A series of approaches were developed to make the simulations possible, compromising the results fidelity. Secondly, the results of CFD simulations were used as the input of an energy tool, to simulate the thermal performance under different rates of air renew. Thirdly, the results of temperature were assessed in terms of thermal comfort. Complementary simulations were carried out to detail the analyses. The results show the potentialities of these tools. However the discussions concerning the simplifications of the approaches, the limitations of the tools and the level of knowledge of the average architect are the major contribution of this study

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This work proposes an environment for programming programmable logic controllers applied to oil wells with BCP type method of artificially lifting. The environment will have an editor based in the diagram of sequential functions for programming of PLCs. This language was chosen due to the fact of being high-level and accepted by the international standard IEC 61131-3. The use of these control programs in real PLC will be possible with the use of an intermediate level of language based on XML specification PLCopen T6 XML. For the testing and validation of the control programs, an area should be available for viewing variables obtained through communication with a real PLC. Thus, the main contribution of this work is to develop a computational environment that allows: modeling, testing and validating the controls represented in SFC and applied in oil wells with BCP type method of artificially lifting

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Oil production and exploration techniques have evolved in the last decades in order to increase fluid flows and optimize how the required equipment are used. The base functioning of Electric Submersible Pumping (ESP) lift method is the use of an electric downhole motor to move a centrifugal pump and transport the fluids to the surface. The Electric Submersible Pumping is an option that has been gaining ground among the methods of Artificial Lift due to the ability to handle a large flow of liquid in onshore and offshore environments. The performance of a well equipped with ESP systems is intrinsically related to the centrifugal pump operation. It is the pump that has the function to turn the motor power into Head. In this present work, a computer model to analyze the three-dimensional flow in a centrifugal pump used in Electric Submersible Pumping has been developed. Through the commercial program, ANSYS® CFX®, initially using water as fluid flow, the geometry and simulation parameters have been defined in order to obtain an approximation of what occurs inside the channels of the impeller and diffuser pump in terms of flow. Three different geometry conditions were initially tested to determine which is most suitable to solving the problem. After choosing the most appropriate geometry, three mesh conditions were analyzed and the obtained values were compared to the experimental characteristic curve of Head provided by the manufacturer. The results have approached the experimental curve, the simulation time and the model convergence were satisfactory if it is considered that the studied problem involves numerical analysis. After the tests with water, oil was used in the simulations. The results were compared to a methodology used in the petroleum industry to correct viscosity. In general, for models with water and oil, the results with single-phase fluids were coherent with the experimental curves and, through three-dimensional computer models, they are a preliminary evaluation for the analysis of the two-phase flow inside the channels of centrifugal pump used in ESP systems

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This study aims to propose a computing device mechanism which is capable to permit a tactile communication between individuals with visual impairment (blindness or low vision) through the Internet or through a local area network (LAN - Local Network Address). The work was developed under the research projects that currently are realized in the LAI (Laboratory of Integrated Accessibility) of the Federal University of Rio Grande do Norte. This way, the research was done in order to involve a prototype capable to recognize geometries by students considered blind from the Institute of Education and Rehabilitation of Blind of Rio Grande do Norte (IERC-RN), located in Alecrim neighborhood, Natal/RN. Besides this research, another prototype was developed to test the communication via a local network and Internet. To analyze the data, a qualitative and quantitative approach was used through simple statistical techniques, such as percentages and averages, to support subjective interpretations. The results offer an analysis of the extent to which the implementation can contribute to the socialization and learning of the visually impaired. Finally, some recommendations are suggested for the development of future researches in order to facilitate the proposed mechanism.

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Worldwide, the demand for transportation services for persons with disabilities, the elderly, and persons with reduced mobility have increased in recent years. The population is aging, governments need to adapt to this reality, and this fact could mean business opportunities for companies. Within this context is inserted the Programa de Acessibilidade Especial porta a porta PRAE, a door to door public transportation service from the city of Natal-RN in Brazil. The research presented in this dissertation seeks to develop a programming model which can assist the process of decision making of managers of the shuttle. To that end, it was created an algorithm based on methods of generating approximate solutions known as heuristics. The purpose of the model is to increase the number of people served by the PRAE, given the available fleet, generating optimized schedules routes. The PRAE is a problem of vehicle routing and scheduling of dial-a-ride - DARP, the most complex type among the routing problems. The validation of the method of resolution was made by comparing the results derived by the model and the currently programming method. It is expected that the model is able to increase the current capacity of the service requests of transport

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Several research lines show that sleep favors memory consolidation and learning. It has been proposed that the cognitive role of sleep is derived from a global scaling of synaptic weights, able to homeostatically restore the ability to learn new things, erasing memories overnight. This phenomenon is typical of slow-wave sleep (SWS) and characterized by non-Hebbian mechanisms, i.e., mechanisms independent of synchronous neuronal activity. Another view holds that sleep also triggers the specific enhancement of synaptic connections, carrying out the embossing of certain mnemonic traces within a lattice of synaptic weights rescaled each night. Such an embossing is understood as the combination of Hebbian and non-Hebbian mechanisms, capable of increasing and decreasing respectively the synaptic weights in complementary circuits, leading to selective memory improvement and a restructuring of synaptic configuration (SC) that can be crucial for the generation of new behaviors ( insights ). The empirical findings indicate that initiation of Hebbian plasticity during sleep occurs in the transition of the SWS to the stage of rapid eye movement (REM), possibly due to the significant differences between the firing rates regimes of the stages and the up-regulation of factors involved in longterm synaptic plasticity. In this study the theories of homeostasis and embossing were compared using an artificial neural network (ANN) fed with action potentials recorded in the hippocampus of rats during the sleep-wake cycle. In the simulation in which the ANN did not apply the long-term plasticity mechanisms during sleep (SWS-transition REM), the synaptic weights distribution was re-scaled inexorably, for its mean value proportional to the input firing rate, erasing the synaptic weights pattern that had been established initially. In contrast, when the long-term plasticity is modeled during the transition SWSREM, an increase of synaptic weights were observed in the range of initial/low values, redistributing effectively the weights in a way to reinforce a subset of synapses over time. The results suggest that a positive regulation coming from the long-term plasticity can completely change the role of sleep: its absence leads to forgetting; its presence leads to a positive mnemonic change

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This work aims at the implementation and adaptation of a computational model for the study of the Fischer-Tropsch reaction in a slurry bed reactor from synthesis gas (CO+H2) for the selective production of hydrocarbons (CnHm), with emphasis on evaluation of the influence of operating conditions on the distribution of products formed during the reaction.The present model takes into account effects of rigorous phase equilibrium in a reactive flash drum, a detailed kinetic model able of predicting the formation of each chemical species of the reaction system, as well as control loops of the process variables for pressure and level of slurry phase. As a result, a system of Differential Algebraic Equations was solved using the computational code DASSL (Petzold, 1982). The consistent initialization for the problem was based on phase equilibrium formed by the existing components in the reactor. In addition, the index of the system was reduced to 1 by the introduction of control laws that govern the output of the reactor products. The results were compared qualitatively with experimental data collected in the Fischer-Tropsch Synthesis plant installed at Laboratório de Processamento de Gás - CTGÁS-ER-Natal/RN

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Pós-graduação em Biofísica Molecular - IBILCE

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)