940 resultados para Modelagem e simulação


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Orientador: António Manuel Casimiro

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A iluminação pública é uma área importante de consumo energético. Actualmente existem uma variedade de soluções tecnológicas que permitem diminuir esse consumo e o correspondente impacte ambiental. No entanto, estas soluções tecnológicas nem sempre são utilizadas devido à falta de suporte informático que permita o planeamento para instalação de redes de iluminação, e/ou actualização das tecnologias utilizadas na rede de iluminação existente. Este relatório apresenta uma ferramenta de simulação do consumo de energia na iluminação pública, através da definição de cenários pelo utilizador, nos quais são simuladas a escolha de lâmpadas, luminárias e sistemas de controlo para cada ramal de electricidade, representados sobre um plano geográfico, que permita o cálculo de indicadores de apoio à decisão. A solução apresentada neste relatório, desenvolvida sobre o sistema de web mapping Google Maps, e sobre a plataforma de desenvolvimento para a web Ruby on Rails, permite o desenho sobre o mapa de uma rede de iluminação pública, e o cálculo em tempo de execução do custo e consumo de energia dos cenários de iluminação simulados pelo utilizador. Através de expansões futuras esta ferramenta poderá contribuir para a eficiente optimização de redes de iluminação pública.

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Este trabalho aborda a crescente necessidade de verificação e testes das redes antes da sua implementação no mundo real. Variáveis como o investimento, estudo qualidade-custo, questões de gestão, fiabilidade e tempo de vida útil são parte das principais preocupações associadas a existentes e futuras redes. É sobretudo neste âmbito que este projecto opera, fornecendo uma solução para uma optimização da autoria de cenários de redes visando a sua execução na ferramenta de simulação de redes NS-3. As tecnologias emergentes são os alvos mais comuns de ferramentas de simulação de redes e este facto é determinante ao decidir que simulador de redes usar para simular os seus cenários. Com este trabalho, o principal objectivo é fornecer aos utilizadores uma ferramenta colaborativa que permite descrever os seus próprios cenários de redes, baseando-se numa linguagem XML denominada por NSDL e traduzir esta estrutura XML para um script C++ que possa ser executado num ambiente evolucionário, como é o caso do NS-3. A solução proposta permite a rápida criação de cenários de redes através de estruturas de dados XML para posterior tradução para C++ e então, execução no NS-3. A maior problemática associada a esta solução é a necessidade de actualização constante em estruturas de validação e de tradução de documentos XML, aquando da actualização da ferramenta NS-3, o que tem vindo a acontecer muito frequentemente devido à sua própria evolução.

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Nesta dissertação de mestrado propõe-se simular um sistema para melhorar a qualidade da energia eléctrica produzida por um parque eólico, utilizando conversores multinível NPC costas com costas e controlo óptimo predictivo. Neste trabalho é feito o controlo da potência activa e reactiva que é fornecida à rede de energia eléctrica, a partir de um gerador eólico e é optimizada a forma de onda alternada e sinusoidal de tensão trifásica sem neutro, minimizando o tremor das correntes e a distorção harmónica total, contribuindo para melhorar a qualidade de energia da rede ou de sistemas de alimentação para aplicações críticas como são os sistemas de telecomunicações. Recorre-se ao Matlab/Simulink para simular e comparar os resultados obtidos no sistema de conversão de energia de um parque eólico com o conversor costas com costas com controlo óptimo predictivo com os resultados obtidos com o conversor costas com costas PWM, disponível na biblioteca do software de simulação.

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Os escoamentos no interior de zonas urbanas, apresentam grande heterogeneidade, pelo que a sua caracterização, requer uma formulação que incorpore explicitamente essa variabilidade espacial. A caracterização, simulação (à escala) e modelação do escoamento em canais artificiais e a aplicação a um caso de estudo, no Laboratório de Hidráulica da UMa, representa o cerne desta dissertação. Os objetivos principais desta dissertação são: a caracterização e desenvolvimento de ferramentas de simulação do comportamento do escoamento em canais artificiais, no caso de uma variação súbita dos caudais afluentes, mecanismos de prevenção de cheia; o desenvolvimento de um modelo de simulação hidrodinâmico, considerando os escoamentos variáveis em superfície livre no caso de situações de cheia, na simulação entre as condições variáveis das afluências, das condições hidromorfológicas do canal e da instalação e operação dos sistemas e regulação dos escoamentos; e ainda a análise da viabilidade da simulação (modelo) na gestão e prevenção de cheias em canais artificiais. Numa primeira instância, procede-se à recolha de toda a informação bibliográfica disponível. Com recurso aos modelos digitais do terreno e ao programa ArcGis, é efetuada toda uma exaustiva caracterização da bacia hidrográfica, relativa ao caso de estudo (canal artificial), a partir da qual foi possível obter os dados inerentes às características geométricas, características de relevo e características de drenagem. Segue-se a análise da precipitação com recurso a folhas de cálculo e dados fornecidos pelas instituições pertinentes, de forma a obter valores de precipitação média diária e anual para aplicação de fórmulas, tanto para calcular valores de tempo de concentração, bem como caudais. O próximo passo é selecionar os troços relevantes do canal em estudo e com recurso ao equipamento disponível no Laboratório de Hidráulica da UMa, à folha de cálculo programada e ao programa HEC-RAS procede-se à simulação/modelação/análise desses troços, comparando o resultado/comportamento simulado, com o expectável e entre os vários métodos. Por fim, são expostas as conclusões, bem como algumas considerações finais e uma listagem de objetivos a manter ou alcançar nos próximos anos, onde se incluem, ações prioritárias e recomendações visando, não só melhorar o processo de caracterização do escoamento em canais artificiais, bem como simplificar a prevenção e gestão de cheias.

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SOUZA, Anderson A.S. ; MEDEIROS, Adelardo A. D. ; GONÇALVES, Luiz Marcos G. . Algorítmo de mapeamento usando modelagem probabilística. In: SIMPOSIO BRASILEIRO DE AUTOMAÇÃO INTELIGENTE, 2007, Natal. Anais... Natal, 2007.

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This thesis aims to describe and demonstrate the developed concept to facilitate the use of thermal simulation tools during the building design process. Despite the impact of architectural elements on the performance of buildings, some influential decisions are frequently based solely on qualitative information. Even though such design support is adequate for most decisions, the designer will eventually have doubts concerning the performance of some design decisions. These situations will require some kind of additional knowledge to be properly approached. The concept of designerly ways of simulating focuses on the formulation and solution of design dilemmas, which are doubts about the design that cannot be fully understood nor solved without using quantitative information. The concept intends to combine the power of analysis from computer simulation tools with the capacity of synthesis from architects. Three types of simulation tools are considered: solar analysis, thermal/energy simulation and CFD. Design dilemmas are formulated and framed according to the architect s reflection process about performance aspects. Throughout the thesis, the problem is investigated in three fields: professional, technical and theoretical fields. This approach on distinct parts of the problem aimed to i) characterize different professional categories with regards to their design practice and use of tools, ii) investigate preceding researchers on the use of simulation tools and iii) draw analogies between the proposed concept, and some concepts developed or described in previous works about design theory. The proposed concept was tested in eight design dilemmas extracted from three case studies in the Netherlands. The three investigated processes are houses designed by Dutch architectural firms. Relevant information and criteria from each case study were obtained through interviews and conversations with the involved architects. The practical application, despite its success in the research context, allowed the identification of some applicability limitations of the concept, concerning the architects need to have technical knowledge and the actual evolution stage of simulation tools

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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 master thesis aims to assess the influence of the design decisions on the energy building performance of hotels. The research is based on the integration of field study and computer simulation. Firstly, a detailed field study is carried out to identify the characteristics of hotels in Natal, Rio Grande do Norte. The items assessed are occupancies, light and equipment densities, types of air conditioning, total and monthly energy consumption, among others. A second and more comprehensive field study is carried out to identify the range of occurrence of architectural variables, with a larger number of buildings. A base case is modelled in VisualDOE, based on the first field study. Then, a first set of simulations are run to explore the sensitivity of the variables on the energy consumption. The results analyses were the base of a second set of simulations, which combined the most influential variables. The results of 384 models were assessed, and the impacts of design decisions were quantified. The study discusses tendencies and recommendations, as well as the methods advantages and disadvantages

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Oil wells subjected to cyclic steam injection present important challenges for the development of well cementing systems, mainly due to tensile stresses caused by thermal gradients during its useful life. Cement sheath failures in wells using conventional high compressive strength systems lead to the use of cement systems that are more flexible and/or ductile, with emphasis on Portland cement systems with latex addition. Recent research efforts have presented geopolymeric systems as alternatives. These cementing systems are based on alkaline activation of amorphous aluminosilicates such as metakaolin or fly ash and display advantageous properties such as high compressive strength, fast setting and thermal stability. Basic geopolymeric formulations can be found in the literature, which meet basic oil industry specifications such as rheology, compressive strength and thickening time. In this work, new geopolymeric formulations were developed, based on metakaolin, potassium silicate, potassium hydroxide, silica fume and mineral fiber, using the state of the art in chemical composition, mixture modeling and additivation to optimize the most relevant properties for oil well cementing. Starting from molar ratios considered ideal in the literature (SiO2/Al2O3 = 3.8 e K2O/Al2O3 = 1.0), a study of dry mixtures was performed,based on the compressive packing model, resulting in an optimal volume of 6% for the added solid material. This material (silica fume and mineral fiber) works both as an additional silica source (in the case of silica fume) and as mechanical reinforcement, especially in the case of mineral fiber, which incremented the tensile strength. The first triaxial mechanical study of this class of materials was performed. For comparison, a mechanical study of conventional latex-based cementing systems was also carried out. Regardless of differences in the failure mode (brittle for geopolymers, ductile for latex-based systems), the superior uniaxial compressive strength (37 MPa for the geopolymeric slurry P5 versus 18 MPa for the conventional slurry P2), similar triaxial behavior (friction angle 21° for P5 and P2) and lower stifness (in the elastic region 5.1 GPa for P5 versus 6.8 GPa for P2) of the geopolymeric systems allowed them to withstand a similar amount of mechanical energy (155 kJ/m3 for P5 versus 208 kJ/m3 for P2), noting that geopolymers work in the elastic regime, without the microcracking present in the case of latex-based systems. Therefore, the geopolymers studied on this work must be designed for application in the elastic region to avoid brittle failure. Finally, the tensile strength of geopolymers is originally poor (1.3 MPa for the geopolymeric slurry P3) due to its brittle structure. However, after additivation with mineral fiber, the tensile strength became equivalent to that of latex-based systems (2.3 MPa for P5 and 2.1 MPa for P2). The technical viability of conventional and proposed formulations was evaluated for the whole well life, including stresses due to cyclic steam injection. This analysis was performed using finite element-based simulation software. It was verified that conventional slurries are viable up to 204ºF (400ºC) and geopolymeric slurries are viable above 500ºF (260ºC)

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This work focuses on the creation and applications of a dynamic simulation software in order to study the hard metal structure (WC-Co). The technological ground used to increase the GPU hardware capacity was Geforce 9600 GT along with the PhysX chip created to make games more realistic. The software simulates the three-dimensional carbide structure to the shape of a cubic box where tungsten carbide (WC) are modeled as triangular prisms and truncated triangular prisms. The program was proven effective regarding checking testes, ranging from calculations of parameter measures such as the capacity to increase the number of particles simulated dynamically. It was possible to make an investigation of both the mean parameters and distributions stereological parameters used to characterize the carbide structure through cutting plans. Grounded on the cutting plans concerning the analyzed structures, we have investigated the linear intercepts, the intercepts to the area, and the perimeter section of the intercepted grains as well as the binder phase to the structure by calculating the mean value and distribution of the free path. As literature shows almost consensually that the distribution of the linear intercepts is lognormal, this suggests that the grain distribution is also lognormal. Thus, a routine was developed regarding the program which made possible a more detailed research on this issue. We have observed that it is possible, under certain values for the parameters which define the shape and size of the Prismatic grain to find out the distribution to the linear intercepts that approach the lognormal shape. Regarding a number of developed simulations, we have observed that the distribution curves of the linear and area intercepts as well as the perimeter section are consistent with studies on static computer simulation to these parameters.

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Steam injection is the most used method of additional recovery for the extraction of heavy oil. In this type procedure is common to happen gravitational segregation and this phenomenon can affect the production of oil and therefore, it shoulds be considered in the projects of continuous steam injection. For many years, the gravitational segregation was not adequately considered in the calculation procedures in Reservoir Engineering. The effect of the gravity causes the segregation of fluids inside the porous media according to their densities. The results of simulation arising from reservoirs could provide the ability to deal with the gravity, and it became apparent that the effects of the gravity could significantly affect the performance of the reservoir. It know that the gravitational segregation can happen in almost every case where there is injection of light fluid, specially the steam, and occurs with greater intensity for viscous oil reservoirs. This work discusses the influence of some parameters of the rock-reservoir in segregation as viscosity, permeability, thickness, cover gas, porosity. From a model that shows the phenomenon with greater intensity, optimized some operational parameters as the rate flow rate steam, distance between the wells injector-producer, and interval of completion which contributed to the reduction in gravity override, thus increasing the oil recovery. It was shown a greater technical-economic viability for the model of distance between the wells 100 m. The analysis was performed using the simulator of CMG (Computer Modeling Group-Stars 2007.11, in which was observed by iterating between studied variables in heavy oil reservoirs with similar characteristics to Brazilian Northeast

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Deep bed filtration occurs in several industrial and environmental processes like water filtration and soil contamination. In petroleum industry, deep bed filtration occurs near to injection wells during water injection, causing injectivity reduction. It also takes place during well drilling, sand production control, produced water disposal in aquifers, etc. The particle capture in porous media can be caused by different physical mechanisms (size exclusion, electrical forces, bridging, gravity, etc). A statistical model for filtration in porous media is proposed and analytical solutions for suspended and retained particles are derived. The model, which incorporates particle retention probability, is compared with the classical deep bed filtration model allowing a physical interpretation of the filtration coefficients. Comparison of the obtained analytical solutions for the proposed model with the classical model solutions allows concluding that the larger the particle capture probability, the larger the discrepancy between the proposed and the classical models

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One of the main activities in the petroleum engineering is to estimate the oil production in the existing oil reserves. The calculation of these reserves is crucial to determine the economical feasibility of your explotation. Currently, the petroleum industry is facing problems to analyze production due to the exponentially increasing amount of data provided by the production facilities. Conventional reservoir modeling techniques like numerical reservoir simulation and visualization were well developed and are available. This work proposes intelligent methods, like artificial neural networks, to predict the oil production and compare the results with the ones obtained by the numerical simulation, method quite a lot used in the practice to realization of the oil production prediction behavior. The artificial neural networks will be used due your learning, adaptation and interpolation capabilities