6 resultados para Simulação por computador

em Repositório Institucional da Universidade Estadual de São Paulo - UNESP


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In this work we study the construction of a test rig made to simulate the Mechanical efforts in wich a drillstring is submitted. The model is based on the rig built at IDS, Germany. There are some fault liabilities while doing the project of the axis. Therefore it's important to analyze and take knowledge of this efforts in order to predict failures like rupture or fatigue collapse. The main objective of this theis is to show the operating principle of the test rig and it's construction. The accomplished study allow us to predict the drillstring behavior and from the economic point of view that is very important because failures results in equipments maintenance that requires time and money causing prejudice to the company. Using SolidWorks, a simulation software, the thesis approaches all the mechanical parts required for it's construction as well as it's working principle. Acquisition sensors like strain gauges, accelerometer, and torque transductor were also used in this model. The objective of this thesis is to create a simulation model to be eventually at FEG(UNESP). During the development of the study, it was possible to learn more about the drilling process and the mechanical efforts in which the drill pipe is submitted. The accomplished contributed with knowledge for the student in the drilling process area. Also during the development of the study it was possible to have contact with different areas of engineering but the study is specifically directed to the construction of the test rig. Therefore the main theme of this thesis is to show the operating principle of the test rig and it's construction

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Dirigir é uma tarefa altamente complexa que requer sincronia entre informações adquiridas e comandos motores, sendo a visão fonte primordial de recursos para o controle do volante por parte do motorista, para que este possa fazer a manobra na quantidade correta e no momento apropriado. Simulações nem sempre preservam os aspectos relevantes do ambiente. O ponto tangente (PT), local mais interno da curva, é onde os motoristas olham em situações de curva ao conduzir um veículo durante contexto natural, e, de acordo com a literatura, este fenômeno também ocorre em situações experimentais com o uso de simuladores específicos de trânsito. Este estudo visa verificar se este comportamento se reproduz em situação simulada de videogame e como a experiência de dirigir naturalmente afeta o desempenho na simulação. Foram recrutados vinte participantes, divididos em dois grupos de dez pessoas cada, com e sem Carteira Nacional de Habilitação e todos com experiência em videogame. A tarefa foi conduzir um veículo em circuito gerado por um jogo de videogame, enquanto seus olhos, e seus respectivos movimentos, foram monitorados e gravados por sistema eye-tracker. Para análise dos dados, foi utilizado o vídeo da imagem gerada pelo videogame com a adição do cursor referente ao olhar do participante. Foram analisadas apenas as situações nas quais os participantes executavam a manobra de cada uma das onze curvas do percurso, utilizando o software ASL Results Plus (versão 1.8.2.18) para estabelecer Áreas de Interesse (AI) de 3º e 10º ao redor do ponto tangente da curva. As variáveis dependentes foram Número Total de Fixações (NF) e Duração Total das Fixações (DF). Os dados foram submetidos à análise de variância de medidas repetidas, tendo fatores grupo (HA ou NH), AI (outros 3º ou 10º) e curvas (onze curvas). Não houve efeito significativo de grupo para ambas as variáveis dependentes. Houve efeito principal de...

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Due to the increasing demand from clients and the search for better performances in the heavy vehicles industry, a progressive evolution in technology in a general way was needed. This paper uses a scientific method to validate, prior to its manufacture, the project of an agricultural wheel for sugar cane harvesters. Monte Carlo Simulation is used in conjunction with Finite Elements Method, in order to simulate the wheel's behavior in a cornering test, identify possible failure regions and get an estimate for its life under fatigue. To this end, test conditions according to EUWA Standards were simulated and obeyed, relevant to fatigue. Simulation results were interesting, according to industry experts involved in the project and manufacture of the product in question, and have provided important elements for the decision making regarding improvements that could be made on the product project before its execution

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The optimization of energy generation systems has become a key issue for technological and social development, mainly in developing countries, where the electricity consumption rises sharply. Gas turbine cycle is an electricity generating system, which studies have demonstrated that inlet air cooling increases net power and thermal efficiency. Thus, this study intends to quantify these parameters for environments with different ambient temperature and relative humidity. Two types of air cooling were used: evaporative and absorption systems. The configuration parameters only with the gas turbine cycle were compared to those whose configuration allowed cooling. First, it was analyzed only evaporative cooling. Next, the absorption system was used for analysis. The last configuration mixed these two methods, dividing equally its flow. The results showed that thermal efficiency and net power increase in any case of cooling, with absorption system more advantageous in terms of generated energy, where an increase between 1 and 2 MW was observed, depending on the ambient conditions . When the two methods were working together at low relative humidity, it showed a thermal efficiency increase compared to absorption system, up to 2.4%. Evaporative cooling was less effective, but it is a good and cheap possibility to increase the cycle parameters at high temperature and low relative humidity

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The search for mechanical components validation methods, employed in product development sector, becomes more avid for less expensive solutions. As a result, programs that can simulate forces acting on a given part through finite element method are gaining more space in the market, once this process consumes less capital when compared to currently-employed empirical validation. This article shows the simulation of an off-road prototype suspension through such technique, using ground excitation history coming from field measurements and also by making use of a specific tool for obtaining dynamic loads from the model in question. The results shown at the end is key for future enhancements aiming mass reduction, for example, that may be executed on the prototype suspension system discussed here

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Pós-graduação em Agronomia (Energia na Agricultura) - FCA