281 resultados para Bombas rotativas


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A criptococose é uma micose sistêmica adquirida pela inalação de basidiosporos ou leveduras desidratadas de Cryptococus neoformans e Cryptococus gattii, estas duas espécies podem causar criptococose oportunista e primária respectivamente. C. neoformans está constituído de tipos moleculares VNI-VNIV e C. gattii de VGI-VGIV que apresentam distribuição geográfica diferenciada, como por exemplo, o tipo VNI é cosmopolita e está associado a AIDS e VGI predominando na Austrália e EUA, o tipo VGII predominando no Brasil e America Latina. Este trabalho tem por objetivo realizar estudo comparado dos tipos moleculares VNI de C. neoformans, VGI e VGII de C. gattii analisando diferentes aspectos tais como: 1- Determinar o perfil da suscetibilidade in vitro da concentração inibitória mínima (CIM) de fluconazol (FLZ), itraconazol (ITZ), 5-fluorocitosina (5FC) e anfotericina B (AMB), isoladamente e de forma combinada de AMB com 5FC e AMB com Voriconazol (VRZ); 2- Determinar CIM pela citometria de fluxo (CMF) frente a FLZ, ITZ e AMB; 3- Definir a concentração mínima letal (CML) de AMB e 5FC, isoladamente e em combinação; 4- Avaliar a ação da melanina frente a 5FC e AMB na forma combinada e isolada de 5FC; 5- Induzir a resistência in vitro para FLZ e padronizar os fluorocromos: acetoximetil - calceína (calceina-AM), acetoximetil - 2\2019, 7\2019 -bis-(2-carboxietil)-5-(e -6)- carboxifluoresceína (BCECF-AM), rodamina 123 (Rh123) e iodeto de 3, 3\2019 \2013dipentiloxacarbocianina (DiOC5) na CMF para verificar a expressão de bombas de efluxo; 6- Comparar a expressão de bombas de efluxo Os resultados permitiram identificar diferentes fenótipos de suscetibilidade que foram analisados e comparados entre as duas espécies e os tipos moleculares, permitindo a produção de quatro artigos; sendo assim, concluímos que: 1- Na análise das CIMs o tipo molecular VGII apresentou-se menos suscetível em relação a VGI e VNI; já na combinação in vitro de AMB e VRZ foi observado 100% de indiferença, e na combinação de AMB e 5FC observou-se necessidade de padronização da concentração da glicose para obter testes que possam ser futuramente relacionados a casos clínicos; 2- O método de CMF demonstrou ser alternativa de leitura automatizada, reprodutível, para os testes de suscetibilidade antifúngica com uso de Laranja de Acridina e FUN-1; 3- Foi verificada a importância da realização do teste da CML para verificar a ação protetora da melanina frente a combinação de AMB e 5FC. 4- A expressão da melanina, na combinação de AMB e 5FC reduz a detecção do sinergismo e o efeito aditivo in vitro. 5. Os isolados induzidos à resistência ao FLZ permitiram obter resultados estatisticamente significativos na verificação de Bombas de efluxo in vitro na CMF com uso de fluorocromo Dioc5 e bloqueador de protonóforos CCCP; 6- Foi verificado que 65% de isolados não induzidos a resistência e 90% de isolados induzidos a resistência do tipo molecular VGII expulsam o FLZ com certa vantagem em relação aos tipos moleculares VGI e VNI. Os resultados deste trabalho contribuem para compreensão do comportamento in vitro de C. neoformans e C. gattii frente a drogas antifúngicas cujos resultados poderão ser aplicados em estudos clínicos de correlação in vitro e in vivo para melhor compreensão da terapêutica antifúngica da criptococose e validação dos testes de suscetibilidade para estas duas espécies

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Conhecer o comportamento vibratório de rotores de máquinas rotativas, já durante a fase de projeto, é uma necessidade cada vez maior nos dias atuais, quando modificações corretivas, após o início da operação, já não são mais aceitáveis, devido aos altos custos de material e execução empregados, se comparados com os lucros que são cada vez mais reduzidos, em função das regras impostas pelo mercado, e devido também ao tempo necessário para tais modificações, que implica em manter a máquina parada, sem gerar lucros nesse penodo, acarretando em mu1tas contratuais para o fabricante. o presente trabalho visa dar subsídiosà análise dinâmicadas linhas de eixos de turbo e hidrogeradores (conjuntos formados pela turbina mais o gerador, usados respectivamentenas centraistermelétricase hidrelétricas). Inicialmente é feita uma breve explanação sobre formas construtivas de hidrogeradores e tipos de turbinas hidráu1icas utilizados atualmente. O trabalho prossegue apresentando as propriedades dos mancais com filme de óleo, os fenômenos do empuxo magnético no rotor do gerador e do efeito giroscópico, bem como a norma ISO 1940, que define os níveis admissíveis de desbalanceamentos residuais para rotores de máquinas É apresentada uma formulação matemática pelo Método das Matrizes de Transferência para as análises das vibrações livres, bem como das vibrações forçadas com carregamentos cíclicos devido aos desbalanceamentos residuais das linhas de eixos. A análise das vibrações livres é feita para a obtenção das fteqüências naturais torcionais e das fteqüências tlexionais críticas em um plano. A análise das vibrações forçadas é elaborada para fornecer as respostas dinâmicas em dois planos ortogonais, devido ao desbalanceamento residual. Para aplicação da metodologia de cálculo apresentada, são elaboradas rotinas computacionais de cálculos, utilizando como plataforma o software MATLAB. Para testar o Método das Matrizes de Transferência, bem como os programas de computador elaborados, faz-se algumas análises com soluções analíticas exatas e comparam-se resultados obtidos. Como aplicação prática, faz-se um estudo aprofundado dos comportamentos dinâmicos algumas linhas de eixos de hidrogeradores, para variações de configurações de construção dessas, bem como para as diversas condições de operação.

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O presente trabalho é dedicado ao estudo de métodos de simulação para ciclos de Rankine. O trabalho é iniciado com a modelagem de um ciclo de Rankine simples e segue evoluindo para configurações mais complexas tal como o ciclo de Rankine com reaquecimento e regeneração. São adotadas as considerações mais convencionais da prática de projeto de centrais termelétricas cujos sistema térmicos baseiam-se no ciclo de Rankine, incluindo-se queda de pressão em tubulações do circuito além de outras perdas. Em seguida, são estabelecidas as expressões matemáticas que possibilitam a determinação das propriedades termodinâmicas da água em seus mais diversos estados ao longo do ciclo. Por último, são desenvolvidos métodos de simulação, chamados neste trabalho de Substituição Sucessiva e Bloco Único, que caracterizam-se pela resolução simultânea do conjunto de equações algébricas dos ciclos elaborados. As simulações são efetuadas através de programas escritos na linguagem Fortran. Os métodos de simulação são aplicados para a obtenção dos resultados considerados mais importantes na análise de sistemas térmicos de potência, tais como rendimento térmico do ciclo, título na saída da turbina, vazões mássicas pelo sistema, potência nas bombas e calor trocado no gerador de vapor e no condensador Na maioria das simulações, estes resultados apresentam-se como funções da: (1) potência elétrica requerida, eficiência isentrópica e pressões na turbina; (2) eficiência térmica, pressão e temperatura no gerador de vapor; (3) pressão e grau de subresfriamento do líquido saturado no condensador e (4) eficiência isentrópica das bombas. São obtidos os mesmos resultados para os métodos de simulação utilizados. O método da Substituição Sucessiva apresentou menor tempo computacional, principalmente para configurações de ciclo mais complexas. Uma aplicação alternativa do método de Bloco Único demonstrou ser inconveniente para ciclos de configurações mais complexas devido ao elevado tempo computacional, quando todas as equações de cálculo das propriedades termodinâmicas são incluídas no sistema de equações a ser resolvido. Melhores rendimentos térmicos e título na saída da turbina foram obtidos para configurações de ciclo de Rankine com reaquecimento e regeneração.

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Apenas 10% apontaram como correto o comportamento dos policiais nas manifestações Outros 19% responderam que ‘alguns colegas não agiram da forma certa, mas não se pode generalizar’ Manifestantes fugindo de bombas de gás lacrimogêneo e vandalismo eram cenas finais de um enredo que se tornou conhecido no fim de muitos protestos, desde de junho do ano passado. Sete meses depois de a população tomar as ruas, uma pesquisa da Fundação Getulio Vargas ( FGV ) revela como as próprias forças de segurança se sentem despreparadas para agir diante dos grandes atos — que prometem se repetir durante a Copa do Mundo. Ao todo, 64% dos policiais militares e civis entrevistados admitiram não ter recebido orientação e treinamento adequado para lidar com as manifestações e os black blocs.

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Parte 3 de um total de 3 videoaulas. Os materiais devem ser assistidos em sequência.

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The system built to characterize electrodes and, consequently, deposited fine films are constituted by a hollow cathode that works to discharges and low pressures (approximately 10-3 to 5 mbar), a source DC (0 to 1200 V), a cylindrical camera of closed borossilicato for flanges of stainless steel with an association of vacuum bombs mechanical and spread. In the upper flange it is connected the system of hollow cathode, which possesses an entrance of gas and two entrances for its refrigeration, the same is electrically isolated of the rest of the equipment and it is polarized negatively. In front of the system of hollow cathode there is a movable sample in stainless steel with possibility of moving in the horizontal and vertical. In the vertical, the sample can vary its distance between 0 and 70 mm and, in the horizontal, can leave completely from the front of the hollow cathode. The sample and also the cathode hollow are equipped with cromel-alumel termopares with simultaneous reading of the temperatures during the time of treatment. In this work copper electrodes, bronze, titanium, iron, stainless steel, powder of titanium, powder of titanium and silício, glass and ceramic were used. The electrodes were investigated relating their geometry change and behavior of the plasma of the cavity of hollow cathode and channel of the gas. As the cavity of hollow cathode, the analyzed aspects were the diameter and depth. With the channel of the gas, we verified the diameter. In the two situations, we investigated parameters as flow of the gas, pressure, current and applied tension in the electrode, temperature, loss of mass of the electrode with relationship at the time of use. The flow of gas investigated in the electrodes it was fastened in a work strip from 15 to 6 sccm, the constant pressure of work was among 2.7 to 8 x 10-2 mbar. The applied current was among a strip of work from 0,8 to 0,4 A, and their respective tensions were in a strip from 400 to 220 V. Fixing the value of the current, it was possible to lift the curve of the behavior of the tension with the time of use. That curves esteem in that time of use of the electrode to its efficiency is maximum. The temperatures of the electrodes were in the dependence of that curves showing a maximum temperature when the tension was maximum, yet the measured temperatures in the samples showed to be sensitive the variation of the temperature in the electrodes. An accompaniment of the loss of mass of the electrode relating to its time of use showed that the electrodes that appeared the spherical cavities lost more mass in comparison with the electrodes in that didn't appear. That phenomenon is only seen for pressures of 10-2 mbar, in these conditions a plasma column is formed inside of the channel of the gas and in certain points it is concentrated in form of spheres. Those spherical cavities develop inside of the channel of the gas spreading during the whole extension of the channel of the gas. The used electrodes were cut after they could not be more used, however among those electrodes, films that were deposited in alternate times and the electrodes that were used to deposit films in same times, those films were deposited in the glass substrata, alumina, stainless steel 420, stainless steel 316, silício and steel M2. As the eletros used to deposit films in alternate time as the ones that they were used to deposit in same times, the behavior of the thickness of the film obeyed the curve of the tension with relationship the time of use of the electrode, that is, when the tension was maximum, the thickness of the film was also maximum and when the tension was minimum, the thickness was minimum and in the case where the value of the tension was constant, the thickness of the film tends to be constant. The fine films that were produced they had applications with nano stick, bio-compatibility, cellular growth, inhibition of bacterias, cut tool, metallic leagues, brasagem, pineapple fiber and ornamental. In those films it was investigated the thickness, the adherence and the uniformity characterized by sweeping electronic microscopy. Another technique developed to assist the production and characterization of the films produced in that work was the caloteste. It uses a sphere and abrasive to mark the sample with a cap impression, with that cap form it is possible to calculate the thickness of the film. Through the time of life of the cathode, it was possible to evaluate the rate of waste of its material for the different work conditions. Values of waste rate up to 3,2 x 10-6 g/s were verified. For a distance of the substratum of 11 mm, the deposited film was limited to a circular area of 22 mm diameter mm for high pressures and a circular area of 75 mm for pressure strip. The obtained films presented thickness around 2,1 µm, showing that the discharge of arch of hollow cathode in argon obeys a curve characteristic of the tension with the time of life of the eletrodo. The deposition rate obtained in this system it is of approximately 0,18 µm/min

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The petroleum production pipeline networks are inherently complex, usually decentralized systems. Strict operational constraints are applied in order to prevent serious problems like environmental disasters or production losses. This paper describes an intelligent system to support decisions in the operation of these networks, proposing a staggering for the pumps of transfer stations that compose them. The intelligent system is formed by blocks which interconnect to process the information and generate the suggestions to the operator. The main block of the system uses fuzzy logic to provide a control based on rules, which incorporate knowledge from experts. Tests performed in the simulation environment provided good results, indicating the applicability of the system in a real oil production environment. The use of the stagger proposed by the system allows a prioritization of the transfer in the network and a flow programming

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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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The Electrical Submersible Pumping is an artificial lift method for oil wells employed in onshore and offshore areas. The economic revenue of the petroleum production in a well depends on the oil flow and the availability of lifting equipment. The fewer the failures, the lower the revenue shortfall and costs to repair it. The frequency with which failures occur depends on the operating conditions to which the pumps are submitted. In high-productivity offshore wells monitoring is done by operators with engineering support 24h/day, which is not economically viable for the land areas. In this context, the automation of onshore wells has clear economic advantages. This work proposes a system capable of automatically control the operation of electrical submersible pumps, installed in oil wells, by an adjustment at the electric motor rotation based on signals provided by sensors installed on the surface and subsurface, keeping the pump operating within the recommended range, closest to the well s potential. Techniques are developed to estimate unmeasured variables, enabling the automation of wells that do not have all the required sensors. The automatic adjustment, according to an algorithm that runs on a programmable logic controller maintains the flow and submergence within acceptable parameters avoiding undesirable operating conditions, as the gas interference and high engine temperature, without need to resort to stopping the engine, which would reduce the its useful life. The control strategy described, based on modeling of physical phenomena and operational experience reported in literature, is materialized in terms of a fuzzy controller based on rules, and all generated information can be accompanied by a supervisory system

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A maioria das instalações de abastecimento de água utiliza bombas hidráulicas do tipo turbobombas, requerendo que o interior de sua carcaça e da tubulação de sucção esteja preenchido com água (escorvados) para que a sucção da água possa ser efetivada. O escorvamento das bombas pode ser efetuado instalando-as abaixo do reservatório de captação (bomba afogada). Quando a bomba está acima do reservatório e o escorvamento é manual, é necessário usar válvulas-de-pé, que são suscetíveis ao mau funcionamento, limitando a confiabilidade do sistema, principalmente em caso de automação. Como alternativa à válvula-de-pé, neste trabalho, foram estudados dois tanques escorva, testados no Laboratório de Hidráulica e Irrigação da FCAV/UNESP - Jaboticabal, avaliando-se situações de altura manométrica de sucção de bomba centrífuga e relações entre volume útil do tanque e volume do tubo de sucção, tendo-se concluído: a) o volume do tanque de escorva é função do volume do tubo de sucção da instalação de bombeamento e da altura manométrica de sucção; b) o volume do tanque de escorva pode ser calculado seguindo-se a Lei de Boyle, com percentagem de acréscimo que, neste estudo, foi de 10% para um modelo de tanque e de 30% para o segundo modelo.

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Pipeline leak detection is a matter of great interest for companies who transport petroleum and its derivatives, in face of rising exigencies of environmental policies in industrialized and industrializing countries. However, existing technologies are not yet fully consolidated and many studies have been accomplished in order to achieve better levels of sensitivity and reliability for pipeline leak detection in a wide range of flowing conditions. In this sense, this study presents the results obtained from frequency spectrum analysis of pressure signals from pipelines in several flowing conditions like normal flowing, leakages, pump switching, etc. The results show that is possible to distinguish between the frequency spectra of those different flowing conditions, allowing recognition and announce of liquid pipeline leakages from pressure monitoring. Based upon these results, a pipeline leak detection algorithm employing frequency analysis of pressure signals is proposed, along with a methodology for its tuning and calibration. The proposed algorithm and its tuning methodology are evaluated with data obtained from real leakages accomplished in pipelines transferring crude oil and water, in order to evaluate its sensitivity, reliability and applicability to different flowing conditions

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The sanitation companies from Brazil has a great challenge for the XXI century: seek to mitigate the rate of physical waste (water, chemicals and electricity) and financial waste caused by inefficient operating systems drinking water supply, considering that currently we already face, in some cases, the scarcity of water resources. The supply systems are increasingly complex as they seek to minimize waste and at the same time better serve the growing number of users. However, this technological change is to reduce the complexity of the challenges posed by the need to include users with higher quality and efficiency in services. A major challenge for companies of water supplies is to provide a good quality service contemplating reducing expenditure on electricity. In this situation we developed a research by a method that seeks to control the pressure of the distribution systems that do not have the tank in your setup and the water comes out of the well directly to the distribution system. The method of pressure control (intelligent control) uses fuzzy logic to eliminate the waste of electricity and the leaks from the production of pumps that inject directly into the distribution system, which causes waste of energy when the consumption of households is reduced causing the saturation of the distribution system. This study was conducted at Green Club II condominium, located in the city of Parnamirim, state of Rio Grande do Norte, in order to study the pressure behavior of the output of the pump that injects water directly into the distribution system. The study was only possible because of the need we had to find a solution to some leaks in the existing distribution system and the extensions of the respective condominium residences, which sparked interest in developing a job in order to carry out the experiments contained in this research

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The present work shows the development and construction of a robot manipulator with two rotary joints and two degrees of freedom, driven by three-phase induction motors. The positions of the arm and base are made, for comparison, by a fuzzy controller and a PID controller implemented in LabVIEW® programming environment. The robot manipulator moves in an area equivalent to a quarter of a sphere. Experimental results have shown that the fuzzy controller has superior performance to PID controller when tracking single and multiple step trajectories, for the cases of load and no load

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Thermoelectric Refrigerators (TEC Thermoelectric Cooling) are solid-state heat pumps used in applications where stabilization of temperature cycles or cooling below the room temperature are required. TEC are based on thermoelectric devices, and these in turn, are based on the Peltier effect, which is the production of a difference in temperature when an electric current is applied to a junction formed by two non-similar materials. This is one of the three thermoelectric effects and is a typical semiconductor junction phenomenon. The thermoelectric efficiency, known as Z thermoelectric or merit figure is a parameter that measures the quality of a thermoelectric device. It depends directly on electrical conductivity and inversely on the thermal conductivity. Therefore, good thermoelectric devices have typically high values of electrical conductivity and low values of thermal conductivity. One of the most common materials in the composition of thermoelectric devices is the semiconductor bismuth telluride (Bi2Te3) and its alloys. Peltier plates made up by crystals of semiconductor P-type and N-type are commercially available for various applications in thermoelectric systems. In this work, we characterize the electrical properties of bismuth telluride through conductivity/resistivity of the material, and X-rays power diffraction and magnetoresistance measurements. The results were compared with values taken from specific literature. Moreover, two techniques of material preparation, and applications in refrigerators, are discussed

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There is nowadays a growing demand for located cooling and stabilization in optical and electronic devices, haul of portable systems of cooling that they allow a larger independence in several activities. The modules of thermoelectrical cooling are bombs of heat that use efect Peltier, that consists of the production of a temperature gradient when an electric current is applied to a thermoelectrical pair formed by two diferent drivers. That efect is part of a class of thermoelectrical efcts that it is typical of junctions among electric drivers. The modules are manufactured with semiconductors. The used is the bismuth telluride Bi2Te3, arranged in a periodic sequence. In this sense the idea appeared of doing an analysis of a system that obeys the sequence of Fibonacci. The sequence of Fibonacci has connections with the golden proportion, could be found in the reproductive study of the bees, in the behavior of the light and of the atoms, as well as in the growth of plants and in the study of galaxies, among many other applications. An apparatus unidimensional was set up with the objective of investigating the thermal behavior of a module that obeys it a rule of growth of the type Fibonacci. The results demonstrate that the modules that possess periodic arrangement are more eficient