845 resultados para mecánica de fluidos
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In the well drilling operations problems caused by contamination of the drilling fluid are common. The dissolution of ions from the geological formations affects the rheological and filtration properties of the fluids. These ions shield the charges of ionic polymers, leading to its precipitation. In this work was performed a detailed study on the stability of the properties of aqueous solutions and aqueous drilling fluids in the presence of sulphated and carboxylated polymers, using carboxymethylcellulose and kappa-carrageenan as polymer compounds carboxylated and sulfated model, respectively. The effects of ionic strength of the aqueous medium containing Na+, Mg2+ and Ca2+ on rheological properties of the polymer and drilling fluids solutions were evaluated by varying the concentration of salts, pH and temperature. It was observed that the fluids with κ-carrageenan suffered less influence against the contamination by the ions at pH 9 to 10, even at higher concentrations, but higher influence on pH> 11. The fluids containing carboxymethylcellulose were more sensitive to contamination, with rapid reduction in viscosity and significant increase of the filtrate volume, while the fluid based polymer sulfated kappa-carrageenan showed evidence of interaction with cations and preserve the rheological properties and improved stability the volume of filtrate.
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In the well drilling operations problems caused by contamination of the drilling fluid are common. The dissolution of ions from the geological formations affects the rheological and filtration properties of the fluids. These ions shield the charges of ionic polymers, leading to its precipitation. In this work was performed a detailed study on the stability of the properties of aqueous solutions and aqueous drilling fluids in the presence of sulphated and carboxylated polymers, using carboxymethylcellulose and kappa-carrageenan as polymer compounds carboxylated and sulfated model, respectively. The effects of ionic strength of the aqueous medium containing Na+, Mg2+ and Ca2+ on rheological properties of the polymer and drilling fluids solutions were evaluated by varying the concentration of salts, pH and temperature. It was observed that the fluids with κ-carrageenan suffered less influence against the contamination by the ions at pH 9 to 10, even at higher concentrations, but higher influence on pH> 11. The fluids containing carboxymethylcellulose were more sensitive to contamination, with rapid reduction in viscosity and significant increase of the filtrate volume, while the fluid based polymer sulfated kappa-carrageenan showed evidence of interaction with cations and preserve the rheological properties and improved stability the volume of filtrate.
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The advance of drilling in deeper wells has required more thermostable materials. The use of synthetic fluids, which usually have a good chemical stability, faces the environmental constraints, besides it usually generate more discharge and require a costly disposal treatment of drilled cuttings, which are often not efficient and require mechanical components that hinder the operation. The adoption of aqueous fluids generally involves the use of chrome lignosulfonate, used as dispersant, which provides stability on rheological properties and fluid loss under high temperatures and pressures (HTHP). However, due to the environmental impact associated with the use of chrome compounds, the drilling industry needs alternatives that maintain the integrity of the property and ensure success of the operation in view of the strong influence of temperature on the viscosity of aqueous fluids and polymers used in these type fluids, often polysaccharides, passives of hydrolysis and biological degradation. Therefore, vinyl polymers were selected for this study because they have predominantly carbon chain and, in particular, polyvinylpyrrolidone (PVP) for resisting higher temperatures and partially hydrolyzed polyacrylamide (PHPA) and clay by increasing the system's viscosity. Moreover, the absence of acetal bonds reduces the sensitivity to attacks by bacteria. In order to develop an aqueous drilling fluid system for HTHP applications using PVP, HPAM and clay, as main constituents, fluid formulations were prepared and determined its rheological properties using rotary viscometer of the Fann, and volume filtrate obtained by filtration HTHP following the standard API 13B-2. The new fluid system using polyvinylpyrrolidone (PVP) with high molar weight had higher viscosities, gels and yield strength, due to the effect of flocculating clay. On the other hand, the low molecular weight PVP contributed to the formation of disperse systems with lower values in the rheological properties and fluid loss. Both systems are characterized by thermal stability gain up to around 120 ° C, keeping stable rheological parameters. The results were further corroborated through linear clay swelling tests.
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The advance of drilling in deeper wells has required more thermostable materials. The use of synthetic fluids, which usually have a good chemical stability, faces the environmental constraints, besides it usually generate more discharge and require a costly disposal treatment of drilled cuttings, which are often not efficient and require mechanical components that hinder the operation. The adoption of aqueous fluids generally involves the use of chrome lignosulfonate, used as dispersant, which provides stability on rheological properties and fluid loss under high temperatures and pressures (HTHP). However, due to the environmental impact associated with the use of chrome compounds, the drilling industry needs alternatives that maintain the integrity of the property and ensure success of the operation in view of the strong influence of temperature on the viscosity of aqueous fluids and polymers used in these type fluids, often polysaccharides, passives of hydrolysis and biological degradation. Therefore, vinyl polymers were selected for this study because they have predominantly carbon chain and, in particular, polyvinylpyrrolidone (PVP) for resisting higher temperatures and partially hydrolyzed polyacrylamide (PHPA) and clay by increasing the system's viscosity. Moreover, the absence of acetal bonds reduces the sensitivity to attacks by bacteria. In order to develop an aqueous drilling fluid system for HTHP applications using PVP, HPAM and clay, as main constituents, fluid formulations were prepared and determined its rheological properties using rotary viscometer of the Fann, and volume filtrate obtained by filtration HTHP following the standard API 13B-2. The new fluid system using polyvinylpyrrolidone (PVP) with high molar weight had higher viscosities, gels and yield strength, due to the effect of flocculating clay. On the other hand, the low molecular weight PVP contributed to the formation of disperse systems with lower values in the rheological properties and fluid loss. Both systems are characterized by thermal stability gain up to around 120 ° C, keeping stable rheological parameters. The results were further corroborated through linear clay swelling tests.
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As time passed, humanity needed the development of new materials used in various activities. High strength materials such as titanium and Inconel for example, had been studied because they are widely used for implants in biomedicine, as well as their use in aerospace and automotive industries. Because of its thermal and mechanical properties, these materials are considered difficult to machine, promoting a rapid wear of cutting tools, primarily caused by the high temperatures in machining. With the development of new materials has emerged the need of developing new manufacturing processes. One of today’s innovative processes is the micro-manufacturing. Being a process with a defined cutting tool geometry, burr formation is a constant and undesirable phenomenon formed during the machininig process. Being detrimental to the manufacturing process, overspending deburring operations are constantly employed leading to increase the aggregate cost to the manufactured material. Assembly components are also impaired if there is no control of the burr, with consequences including the disposal of components due to the occurence of this phenomenon. This paper presents the study of micro-milling Inconel 718, investigating influential parameters in the formation of burrs in order to minimize the occurrence of this phenome non. Different feed rates per tooth and cutting speed are evaluated, and different cutting fluids with different methods of applying the fluid. Adding graphene to cutting fluids was considered as a variable to be investigated, which is considered an excellent solid lubricant, in addition to increasing the thermal conductivity of the cooling solution (AZIMI; MOZAF FARI, 2015). The micro-milling temperature was evaluated in the present work. It was observed a new phenomenon that causes the machined surface temperature decreases below room temperature when using the solution water + oil. This phenomenon is explained in further chapters. In order to unravel this phenomenon, a new test was proposed and, from this test, it can be concluded, comparatively, which cutting fluid has a better cooling property.Using cutting fluid with different thermal properties has shown influence when analy zing burr formation and reducing machining temperature.
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Background: Ventilator-associated pneumonia (VAP) is a health care related infection and the second leading cause of nosocomial infections linked to morbidity and mortality rates. Therefore, the implementation of care guideline protocols has become necessary for critically ill patients in ICUs in order to provide adequate treatment. Objective: To assess the impact of a package called FAST HUG in PAV ; analyze the risk factors for occurrence of VAP in adult patients at an ICU of a private hospital ; analyze the clinical characteristics of patients who were or were not submitted to the FAST HUG ; analyze the etiology of microorganisms related to EPI ; determine the cost of hospitalization in patients with pneumonia and in patients who received the FAST HUG.Methods: The study was performed in a private hospital that has an 8-bed ICU. It was divided into two phases: before implementing FAST HUG, from August 2011 to August 2012 and after the implementation of FAST HUG, from September 2012 to December 2013. An individual form for each patient in the study was filled out by using information taken electronically from the hospital medical records. The following data for each patient was obtained: age, gender, reason for hospitalization, the use of three or more types of antibiotics, length of stay, intubation time and progress. Findings: After the implementation of FAST HUG, there was an observable decrease in the occurrence of VAP (p <0.01), as well as a reduction in mortality rates (p <0.01). It also shows that the intervention performed in the study resulted in a significant reduction in ICU hospital costs (p <0.05).Conclusion: The implementation of FAST HUG reduced the cases of VAP. Thus, decreasing costs, reducing mortality rates and length of stay, which therefore resulted in an improvement to the overall quality of care.
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Este projeto visa efetuar a caracterização mecânica da liga AlSi10Mg obtida por SLM (Fundição de Metal por Laser) para aplicação em componentes automóveis. Ao longo deste projeto é efetuada uma pesquisa bibliográfica das tecnologias de fabrico rápido mais frequentemente aplicadas ao processamento de alumínios, abordando de forma específica a tecnologia SLM, bem como a influência dos seus parâmetros no processamento de ligas de alumínio. Será levado a cabo um estudo comparativo da liga AlSi10Mg fabricada por fundição em molde permanente com a obtida por SLM, analisando-se a microestrutura das ligas, bem como as suas propriedades mecânicas, através da realização de ensaios de dureza, tração, análise dinâmico-mecânica e fadiga. Deste modo será possível perceber as diferenças entre o comportamento mecânico da liga obtida por SLM e a liga obtida pelo método convencional. Em resultado do estudo realizado, observou-se que a liga AlSi10Mg obtida por SLM apresenta uma microestrutura muito mais fina do que a liga fabricada por fundição em molde permanente, o que lhe permite ter um comportamento mecânico superior na maioria dos ensaios mecânicos realizados. Assim, é possível aplicar a tecnologia SLM ao fabrico de componentes em alumínio no sector automóvel, visto ser possível obter propriedades mecânicas superiores ou equivalentes aos componentes fabricados pelos processos de fabrico convencionais.
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Uma das causas de insucesso nas artroplastias do joelho está relacionada com a dor que os doentes sentem a curto e/ou longo prazo. A dor tanto pode ser devida a infecção ou descolamento, como pode estar presente sem qualquer um destes factores, provocando a substituição da prótese. Existem estudos de origem clínica que relatam uma percentagem, que se pode considerar relevante, de dor na extremidade da haste, quer na zona da tíbia quer no fémur [1-3]. A nível ósseo, a cintigrafia pode mostrar as alterações metabólicas locais, antes de qualquer tradução radiográfica [4]. O aumento da carga, a nível ósseo, estimula localmente a actividade osteoblástica [4]. Esta estimulação pode originar dor local, como demonstrado num caso clínico por Fonseca et al. [5], referente a um doente com dor na extremidade da haste de uma prótese do joelho e onde a cintigrafia com Tc 99m [5] mostrava uma actividade celular mais intensa em torno da extremidade. O presente estudo teve como objectivo verificar até que ponto é possível estabelecer uma relação entre o sintoma dor e o comportamento biomecânico da haste da prótese do joelho e, particularmente, na sua extremidade. A análise relativa ao nível de tensões no osso, em torno da haste tibial, comparativamente ao valor do osso intacto para o mesmo tipo de carga e localização, foi realizada utilizando a aplicação de análise estrutural HyperWorks (Altair Engineering Inc.). Um estudo posterior, relativo à forma e material da extremidade da haste levou à conclusão de que é possível uma melhor uniformização das tensões no osso, podendo-se desta forma aproximar às tensões fisiológicas. Neste sentido, a forma geometral da haste deverá ser objecto de optimização, que poderá incluir materiais poliméricos, de menor rigidez, na ponta distal do implante.
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Mestrado em Tecnologia de Diagnóstico e Intervenção Cardiovascular - Área de especialização: Intervenção Cardiovascular.
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Introducción: el aprendizaje de la ventilación mecánica (VM) pediátrica requiere de tiempo y diversas estrategias educativas. En los últimos años se han utilizado los videopodcast para la educación médica. Objetivos: documentación filmográfica de los elementos básicos de la mecánica respiratoria durante la VM en un modelo animal. Creación de un videopodcast para la formación de recursos humanos especializados en VM pediátrica. Metodología: se prepararon diferentes secuencias de VM con ventilador y en forma manual. Se realizó exposición pulmonar mediante toracotomía y VM convencional en un cerdo. Se grabó simultáneamente lo monitorizado por el ventilador y la visualización in vivo del pulmón expuesto ante cada secuencia. Dos especialistas en cuidados intensivos pediátricos analizaron durante la edición las grabaciones y confeccionaron un guión explicativo de lo observado. Resultados: se editó un video con las diferentes secuencias previstas: VM basal, VM sin presión positiva teleespiratoria (PEEP), VM con niveles incrementales de PEEP, VM con bolsa autoinflable, aspiración de sonda endotraqueal con circuito cerrado y abierto durante VM con ventilador y manual con operador. Se editó un videopodcast con leyendas explicativas. Discusión: la utilización de recursos digitales para la enseñanza y divulgación de diversas especialidades médicas es cada vez más frecuente. El videopodcast se ha expandido como una nueva herramienta educativa. Se construyó un modelo para la capacitación de los recursos humanos en VM mediante este formato. La experiencia servirá para construir una videoteca universitaria dirigida a la enseñanza de cuidados críticos del niño y para la divulgación de experimentos biomédicos.
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La finalidad del presente trabajo de investigación es la elaboración de un plan estratégico para la empresa Ingeniería de Sistemas de Fluidos SAC para los siguientes tres años. Este plan se inicia analizando el entorno externo en el que se desempeña ISF SAC, tanto el entorno general como el entorno de la industria, de esta manera conocer las oportunidades y amenazas a las que se debe enfrentar la empresa. Una vez analizado el entorno externo, se realiza el análisis interno en el cual se evalúan las áreas funcionales así como la cadena de valor con la finalidad de obtener las fortalezas y debilidades de ISF SAC. Complementando estos resultados, se evalúan los recursos y capacidades para luego obtener la ventaja competitiva de la empresa y determinar la estrategia genérica. Una vez definida la estrategia genérica, se realiza el análisis de costos de los proyectos, por ser un aspecto crucial para el buen desempeño de la empresa en el largo plazo. Con esto, se puede proceder a determinar la misión, visión y objetivos estratégicos para ISF SAC, los cuales se tratarán de alcanzar siguiendo una estrategia de crecimiento adecuada y desarrollando planes funcionales para diferentes áreas de la empresa. La estrategia de crecimiento a emplearse se determina utilizando los métodos de la matriz FODA cruzada y la matriz PEYEA, cuyos resultados se analizan en la matriz cuantitativa de la planificación estratégica. Los cuatro planes funcionales (marketing, operaciones, recursos humanos y finanzas), detallan las acciones que se deben tomar para alcanzar los objetivos definidos previamente. El plan de responsabilidad social empresarial, complementa todos los resultados para establecer la importancia de las operaciones de la empresa dentro de la sociedad. Finalmente, se propone llevar el control de todos los aspectos antes mencionados utilizando el método del Balanced Scorecard donde se asignan los indicadores, metas y responsables de alcanzar los objetivos definidos. El trabajo finaliza con las conclusiones obtenidas así como recomendaciones para el futuro.
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Se adicionó biosólido como componente de una pasta cerámica para la fabricación de ladrillos. Se caracterizaron las materias primas (arcilla y biosólido) en cuanto a composición química, fases mineralógicas, comportamiento térmico y características físicas. Se fabricaron ladrillos con hasta un 15 % de inclusión de biosólido en estado seco, de dimensiones estándar según Norma Técnica Colombiana (NTC) 296 y cocidos a temperaturas de 950 °C, 1000 °C y 1050 °C. Se realizaron pruebas de resistencia a la compresión bajo los lineamientos de la NTC 4017, con el fin de evaluar el efecto que sobre esta propiedad tiene la cantidad porcentual de adición del biosólido. Desde el punto de vista ambiental se evaluó la inocuidad de los metales presentes en el biosólido, desarrollando la prueba Toxicity Characteristic Leaching Procedure (TCLP) en ladrillos fabricados con adición del residuo.
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Objective: To know the mothers’ perception of the main difficulties in the care of children with special needs dependent on mechanical ventilation. Methods: A qualitative research conducted from August to November 2013 at the Dr. Waldemar Alcântara Hospital in Fortaleza, CE. Respondents were seven mothers of children under mechanical ventilation. Data were collected using sociodemographic questionnaires and guiding questions, from which emerged thematic categories that underwent content analysis, with data being discussed in the light of the relevant literature. Results: The average age of mothers ranged 18-36 years. Six were married or had formed a common-law marriage. Education level ranged from illiteracy to complete secondary education. Family income was up to one minimum wage. Mothers reported anguish and fear regarding the initial impact of the diagnosis, with little understanding of the biomedical language and a lot of questions during the whole period after diagnosis and during hospitalization. Conclusion: Difficulties involve aspects related to family abandonment, the distancing from the other children at the expense of the care of the disable child, the difficulty in engaging in social relationships, and the prognosis and care of their child. The hospital environment generates psychological repercussions on the expectation and hopelessness regarding the cure of their child, as they know they might die. Healthcare professionals can favor incredible transformations, generating a new “care”, broader and humanized, facilitating the recovery/restructuring of the family within this new universe.
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Gas-liquid two-phase flow is very common in industrial applications, especially in the oil and gas, chemical, and nuclear industries. As operating conditions change such as the flow rates of the phases, the pipe diameter and physical properties of the fluids, different configurations called flow patterns take place. In the case of oil production, the most frequent pattern found is slug flow, in which continuous liquid plugs (liquid slugs) and gas-dominated regions (elongated bubbles) alternate. Offshore scenarios where the pipe lies onto the seabed with slight changes of direction are extremely common. With those scenarios and issues in mind, this work presents an experimental study of two-phase gas-liquid slug flows in a duct with a slight change of direction, represented by a horizontal section followed by a downward sloping pipe stretch. The experiments were carried out at NUEM (Núcleo de Escoamentos Multifásicos UTFPR). The flow initiated and developed under controlled conditions and their characteristic parameters were measured with resistive sensors installed at four pipe sections. Two high-speed cameras were also used. With the measured results, it was evaluated the influence of a slight direction change on the slug flow structures and on the transition between slug flow and stratified flow in the downward section.