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Utilização de processamento de imagens em aplicações da aerodinâmica / Utilization of images processing in aerodynamics applicationBueno, Samuel Corrêa 16 October 1998 (has links)
Neste trabalho apresentamos o desenvolvimento e a realização de um experimento utilizando recursos modernos de processamento de imagens como câmeras CCD, placas de aquisição de imagens e linguagem de programação visual com interface multimídia para observação do fenômeno do Estol dinâmico que tem grande importância do estudo de estabilidade de aeronaves. O fenômeno de Estol ocorre nos aerofólios de aeronaves como nos rotores de helicópteros e asas de aeronaves acrobáticas. Nosso sistema e capaz de detectar dentro de um experimento de um aerofólio oscilando em baixas freqüências a Histerese de sustentação que ocorre neste. Utilizamos também na nossa abordagem redes neurais backpropagation para acomodação dos dados experimentais. Implementamos e descrevemos um hardware mecânico para obtenção de melhores imagens e as funções escritas em Visual Basic que foram utilizadas, com o objetivo de permitir a reprodução do experimento em outros centros de pesquisa. / In this work we present an experiment using modern imaging processing techniques such as CCD cameras, video acquisition boards and visual programming using multimedia interfacing for the observation of the Stall phenomena which has great importance in the airplane stability. The Stall phenomena occurs in arplaine (airfoils) such as in helicopter blades and acrobatic airplane wings. We demonstrated that the developed system is able to detect the lift histeresis in a low frequency oscillating bidimensional airfoil. We also used in our approach backpropagation neural network for the experimental data accomodation. In order to allow replication of the experiment by other institutions, we present a detailed description of the mechanical setup used to obtain the best possible images and of the Visual Basic functions.
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Utilização de processamento de imagens em aplicações da aerodinâmica / Utilization of images processing in aerodynamics applicationSamuel Corrêa Bueno 16 October 1998 (has links)
Neste trabalho apresentamos o desenvolvimento e a realização de um experimento utilizando recursos modernos de processamento de imagens como câmeras CCD, placas de aquisição de imagens e linguagem de programação visual com interface multimídia para observação do fenômeno do Estol dinâmico que tem grande importância do estudo de estabilidade de aeronaves. O fenômeno de Estol ocorre nos aerofólios de aeronaves como nos rotores de helicópteros e asas de aeronaves acrobáticas. Nosso sistema e capaz de detectar dentro de um experimento de um aerofólio oscilando em baixas freqüências a Histerese de sustentação que ocorre neste. Utilizamos também na nossa abordagem redes neurais backpropagation para acomodação dos dados experimentais. Implementamos e descrevemos um hardware mecânico para obtenção de melhores imagens e as funções escritas em Visual Basic que foram utilizadas, com o objetivo de permitir a reprodução do experimento em outros centros de pesquisa. / In this work we present an experiment using modern imaging processing techniques such as CCD cameras, video acquisition boards and visual programming using multimedia interfacing for the observation of the Stall phenomena which has great importance in the airplane stability. The Stall phenomena occurs in arplaine (airfoils) such as in helicopter blades and acrobatic airplane wings. We demonstrated that the developed system is able to detect the lift histeresis in a low frequency oscillating bidimensional airfoil. We also used in our approach backpropagation neural network for the experimental data accomodation. In order to allow replication of the experiment by other institutions, we present a detailed description of the mechanical setup used to obtain the best possible images and of the Visual Basic functions.
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A Fundamental Study of Advance Ratio, Solidity, Turbine Radius, and Blade Profile on the Performance Characteristics of Vertical Axis Turbines (VATs)Norman, Adam Edward 26 July 2016 (has links)
In this dissertation, various VAT parameters are investigated to determine the effect of the overall efficiency of the turbine at a high Reynolds number. To increase the efficiency of the vertical axis turbines, 2D CFD simulations are completed in an effort to better understand the physics behind the operation of these turbines. Specifically, the effect of advance ratio, solidity, and wake interactions were investigated. Simulations were completed in OpenFOAM using the k-ω SST turbulence model at a nominal Reynolds number of 500,000 using a NACA 0015 airfoil. To simulate the motion of the turbine, Arbitrary Mesh Interfacing (AMI) was used. For all of the parameters tested, it was found that the geometric effective angle of attack seen by the turbine blades had a significant impact on the power extracted from the flow. The range of effective angles of attack was found to decrease as the advance ratio increased. In spite of this, a severe loss in the power coefficient occurred at an advance ratio of 2.5 during which the blade experienced dynamic stall. This effect was also seen when the number of turbine blades was changed to four, at a solidity of 1.08. This negative impact on performance was found to be due to the increase in the drag component of the tangential force when dynamic stall occurs. Results indicate that wake interactions between subsequent blades have a large impact on performance especially when the wake interaction alters the flow direction sufficiently to create conditions for dynamic stall.
To improve the performance of the VAT in the presence of dynamic stall, calculations were completed of a static twisted blade profile using GenIDLEST and OpenFOAM. There was found to be no improvement in the lift coefficient when comparing the twisted blade profile with a 2D blade at the same median angle of attack as the twisted blade. To further see the effects of the twisted blade, an effective VAT pitching motion was given to the blade and again compared to a 2D blade with the same motion. In this case there was significant improvement seen in the performance of the twisted blade. / Master of Science
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