1000 resultados para Ventilação mecânica não invasiva


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Num mundo globalizado, as organizações têm sido forçadas a inovar em busca de novas técnicas de gestão, devido a limitações dos modelos de gestão tradicional. Para subsistir num mercado altamente competitivo, as organizações procuram diferenciar-se da concorrência por via de utilização de novas metodologias de gestão que permitam aumentar a eficiência dos processos internos. A implementação de fundamentos e técnicas da metodologia Lean, em conjunto com os conceitos e os instrumentos analíticos da metodologia TRIZ, pode auxiliar as organizações na procura de melhoria contínua em todas as áreas funcionais, encontrando soluções mais criativas e inovadoras. A presente dissertação foi elaborada no âmbito de um estágio curricular realizado numa empresa metalomecânica, que atua no setor industrial de tratamento de ar e de ventilação. Os objetivos do estágio delineados inicialmente visavam o estudo da melhoria de organização do armazém numa das unidades industriais do grupo. No decorrer do estágio, foi possível não só melhorar em vários aspetos o funcionamento do armazém, como também foram elaboradas e implementadas várias ações de melhoria nas outras áreas funcionais da empresa. A análise efetuada à situação atual da empresa e as soluções encontradas para os problemas identificados basearam-se em algumas técnicas e instrumentos analíticos das metodologias Lean e TRIZ. Entre os vários resultados obtidos, destacam-se a redução significativa de stocks, a reorganização da hierarquia funcional, a melhoria do fluxo de informação interna e externa (entre a empresa e os fornecedores), a criação de um sistema de deteção de não conformidades com origem nos fornecedores, entre outros. No desenvolvimento deste estágio e com base nos resultados obtidos, foi submetido e aceite um artigo e uma proposta para o concurso de projetos no âmbito de The 6th International Conference on Systematic Innovation (ICSI) & The 5th Global Competition on Systematic Innovation (GCSI).

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Na presente dissertação analisam-se as potencialidades da produção de energia eléctrica num edifício a partir da ventilação natural. Para tal, e partindo de estudos anteriormente realizados, foi utilizado um modelo simplificado para o estudo da ventilação natural. Numa primeira fase definiu-se a geometria mais adequada para o edifício, de modo a aproveitar o vento da melhor forma possível. De seguida fez-se a modelação do ventilador e do aerogerador considerados para este edifício. Posto isto, recorrendo a um programa de cálculo numérico, foram analisadas as diferentes situações a que o edifício está sujeito. Aqui, e tendo sempre em conta que o espaço habitado necessita de um número mínimo de renovações de ar, fizeram-se diferentes simulações para as diferentes velocidades do vento, fazendo variar as áreas das aberturas, velocidades de rotação do ventilador, e o número de aerogeradores de modo a obter o número de renovações estipulado para o espaço ocupado.

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FUNDAMENTO: De um modo geral, as operações estão cada vez menos invasivas e a cirurgia cardíaca começa a seguir por este caminho. OBJETIVO: Avaliar a evolução de cem pacientes submetidos à operação de revascularização do miocárdio minimamente invasiva. MÉTODOS: O acesso ao coração deu-se através de pequena toracotomia lateral no 4º espaço intercostal esquerdo, com 6 cm, iniciando-se ao nível do mamilo. Pelo mesmo espaço intercostal, 3 cm após o término da incisão principal, foi inserida ótica de 6,5 mm com 30º. Nos casos em que a veia safena foi utilizada, o pericárdio foi aberto em cima da aorta e, com uma pressão sistólica de 80 mmhg, foi pinçada parcialmente, sendo a anastomose proximal feita de maneira convencional. As anastomoses distais foram feitas de modo convencional. O procedimento foi realizado sem circulação extracorporal (CEC) com auxílio de ventilação monopulmonar. RESULTADOS: A idade média foi de 63,9 ± 10,66 anos. Sessenta e oito (68%) eram do sexo masculino. Cinquenta e três (53%) encontravam-se em classe funcional III ou IV. A função do ventrículo esquerdo era normal em cinquenta e três (53%) pacientes. Quarenta e dois (42%) haviam sido submetidos à angioplastia prévia. Foram realizadas 153 anastomoses distais, variando de 1 a 3. O tempo médio de ventilação foi de 4,06 ± 4,08 horas. Dezessete (17%) pacientes apresentaram fibrilação atrial e oito (8%) pneumonias. Houve dois óbitos nesta série. CONCLUSÃO: A revascularização mostrou-se segura, com baixa mortalidade e morbidade. Com novos dispositivos, essa operação poderá ter uma aplicabilidade maior.

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Cambios en la PaO2 se correlacionan de manera positiva con cambios en la SO2 permitiendo determinar la severidad de la hipoxemia. La búsqueda de un predictor que de forma no invasiva detecte pacientes con mayor compromiso pulmonar ha ganando auge; estableciendo los grados de hipoxemia moderada o severa como criterios para LPA y SDRA, a partir de los valores de PaO2/FiO2 y su correlación con la SO2/FiO2. No se conocen los valores de SO2/FiO2 que a más de 2500msnm permitan identificar la severidad de la hipoxemia en pediatría. Metodología: estudio de correlación y predicción en pacientes de un mes a 18 años de edad admitidos a UCIP, con soporte ventilatorio mecánico y análisis de gases arteriales seriados en dos Hospitales de referencia. Análisis de relación lineal y determinación de la correlación SOFiO2 y PaFiO2 a partir de 430 mediciones. Resultados: el estudio mostro una media para PaO2/FiO2 de 192,12 (DS+75,62) y para SO2/FiO2 de 208,61 (DS+62,79). La correlación SO2/FiO2 y Pa/FiO2 fue positiva y moderada-alta (r= 0,702;p<0.01). A partir de la regresión lineal entre las variables se obtuvo la ecuación de determinación PaO2/FiO2 = (0.92xSO2/FIO2) - 12, con sensibilidad y especificidad de 76% para detectar hipoxemia severa (SO2/FiO2<231), y sensibilidad de 74% y especificidad de 71% para hipoxemia moderada (SO2/FiO2<340). Discusión: los hallazgos obtenidos son muy útiles desde el punto de vista clínico para detectar rápidamente pacientes con hipoxemia moderada y severa, con riesgo potencial de deterioro, cuando no se dispone de línea arterial ó gases arteriales.

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This work analyses a study on natural ventilation and its relation to the urban legislation versus the building types in an urban fraction of coastal area of Praia do Meio in the city of Natal/RN, approaching the type or types of land use most appropriate to this limited urban fraction. The objective of this study is to analyse the effects of the present legislation as well as the types of buildings in this area on the natural ventilation. This urban fraction was selected because it is one of the sites from where the wind flows into the city of Natal. This research is based on the hypothesis stating that the reduction on the porosity of the urban soil (decrease in the set back/boundary clearance), and an increase in the form (height of the buildings) rise the level of the ventilation gradient, consequently causing a reduction on the wind speed at the lowest part of the buildings. Three-dimensional computational models were used to produce the modes of occupation allowed in the urban fraction within the area under study. A Computational Fluid Dynamics (CFD) software was also used to analyse the modes of land occupation. Following simulation, a statistical assessment was carried out for validation of the hypothesis. It was concluded that the reduction in the soil porosity as a consequence of the rates that defined the minimum boundary clearance between the building and the boundary of the plot (and consequently the set back), as well as the increase in the building form (height of the buildings) caused a reduction in the wind speed, thus creating heat islands

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The present work studies the natural ventilation and its relationship with the urban standards, which establishes the form of occupation and use of the land in our cities. The method simulates the application of the urban standards of the City Master Plan over the last three years. The simulation takes place in the District of Petrópolis, in the city of Natal , Brazil and analyses the effects of the standards of natural ventilation. The formulated hypothesis states that the reductions in the urban spaces between buildings rises up the vertical profile of ventilation, reducing, therefore, the velocity of the wind at the lower levels of the buildings. To develop the study, occupation models were built, using computerized, three-dimensional models. These occupation models were analyzed using the CFD (Computational Fluid Dynamics) code. The conclusion is that the more we reduce the urban space between buildings, the more we reduce the wind speed in constructed areas, increasing, therefore, the possibility to generate heat islands

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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This work analyses a study on natural ventilation and its relation to the urban legislation versus the building types in an urban fraction of coastal area of Praia do Meio in the city of Natal/RN, approaching the type or types of land use most appropriate to this limited urban fraction. The objective of this study is to analyse the effects of the present legislation as well as the types of buildings in this area on the natural ventilation. This urban fraction was selected because it is one of the sites from where the wind flows into the city of Natal. This research is based on the hypothesis stating that the reduction on the porosity of the urban soil (decrease in the set back/boundary clearance), and an increase in the form (height of the buildings) rise the level of the ventilation gradient, consequently causing a reduction on the wind speed at the lowest part of the buildings. Three-dimensional computational models were used to produce the modes of occupation allowed in the urban fraction within the area under study. A Computational Fluid Dynamics (CFD) software was also used to analyse the modes of land occupation. Following simulation, a statistical assessment was carried out for validation of the hypothesis. It was concluded that the reduction in the soil porosity as a consequence of the rates that defined the minimum boundary clearance between the building and the boundary of the plot (and consequently the set back), as well as the increase in the building form (height of the buildings) caused a reduction in the wind speed, thus creating heat islands

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The present work studies the natural ventilation and its relationship with the urban standards, which establishes the form of occupation and use of the land in our cities. The method simulates the application of the urban standards of the City Master Plan over the last three years. The simulation takes place in the District of Petrópolis, in the city of Natal , Brazil and analyses the effects of the standards of natural ventilation. The formulated hypothesis states that the reductions in the urban spaces between buildings rises up the vertical profile of ventilation, reducing, therefore, the velocity of the wind at the lower levels of the buildings. To develop the study, occupation models were built, using computerized, three-dimensional models. These occupation models were analyzed using the CFD (Computational Fluid Dynamics) code. The conclusion is that the more we reduce the urban space between buildings, the more we reduce the wind speed in constructed areas, increasing, therefore, the possibility to generate heat islands

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This work analyses a study on natural ventilation and its relation to the urban legislation versus the building types in an urban fraction of coastal area of Praia do Meio in the city of Natal/RN, approaching the type or types of land use most appropriate to this limited urban fraction. The objective of this study is to analyse the effects of the present legislation as well as the types of buildings in this area on the natural ventilation. This urban fraction was selected because it is one of the sites from where the wind flows into the city of Natal. This research is based on the hypothesis stating that the reduction on the porosity of the urban soil (decrease in the set back/boundary clearance), and an increase in the form (height of the buildings) rise the level of the ventilation gradient, consequently causing a reduction on the wind speed at the lowest part of the buildings. Three-dimensional computational models were used to produce the modes of occupation allowed in the urban fraction within the area under study. A Computational Fluid Dynamics (CFD) software was also used to analyse the modes of land occupation. Following simulation, a statistical assessment was carried out for validation of the hypothesis. It was concluded that the reduction in the soil porosity as a consequence of the rates that defined the minimum boundary clearance between the building and the boundary of the plot (and consequently the set back), as well as the increase in the building form (height of the buildings) caused a reduction in the wind speed, thus creating heat islands

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The present work studies the natural ventilation and its relationship with the urban standards, which establishes the form of occupation and use of the land in our cities. The method simulates the application of the urban standards of the City Master Plan over the last three years. The simulation takes place in the District of Petrópolis, in the city of Natal , Brazil and analyses the effects of the standards of natural ventilation. The formulated hypothesis states that the reductions in the urban spaces between buildings rises up the vertical profile of ventilation, reducing, therefore, the velocity of the wind at the lower levels of the buildings. To develop the study, occupation models were built, using computerized, three-dimensional models. These occupation models were analyzed using the CFD (Computational Fluid Dynamics) code. The conclusion is that the more we reduce the urban space between buildings, the more we reduce the wind speed in constructed areas, increasing, therefore, the possibility to generate heat islands

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Thermosensitive hydrogels were synthesized using alginate-Ca2+ in association with a thermosensitive polymer, such as PNIPAAm. The mechanical properties of the hydrogels were determined measuring the maximum tension of deformation. With the increase of the temperature by 25 to 40 ºC above the LCST the chains of PNIPAAm collapsed, dragging the alginate net and diminishing the size of the pores. The decrease in the size of the pores of the hydrogel was followed by an increase in the mechanicals resistance of the material.

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Sugarcane holds an important place in the Brazilian economy. Grate part of the sugarcane harvested still accomplished largely manually. Sugarcane harvesters available in Brazil use the technology to chop the cane into 200 to 300 mm billets to allow on the go cane transferring to transport, contradicting the traditional method of whole stalk sugarcane harvesting system. In order to make whole stalk mechanical harvesting system possible, one of the barriers to be expired is the mechanical removal of the straw. The design of a mechanism that accomplishes this operation depends directly on the knowledge of the mechanical properties of the sugarcane related to its resistance to compression and the forces necessary to remove the leaves from the stalk. Compression tests were conducted using the universal testing machine. For leaves removal test by friction, a special apparatus was designed to allow the registration of the normal and traction force. The sugarcane stalk can resist up to 4.9 MPa. With a normal pressure of 0.8 MPa, which correspond to a friction force of 315 N, it is possible to remove the leaves, independent of its location in the sugarcane stalk.

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Livestock facilities, where animals carry their productive cycle, must have as main characteristic, the control of influence over climatic factors on animals. The environment variations can be controlled through the use of different ventilation systems. The objective of this research was to evaluate the influence of different environment conditioning systems on swine nursery. Three treatments have been tested: natural ventilation, cooled ventilation and forced ventilation. The climatic parameters evaluated were: air temperature, relative humidity and black globe temperature. The physiological parameters analyzed were: respiratory frequency and back fat thickness. Number of born alive piglets, average weight at weaning and number of weaned piglets were also evaluated parameters. The use of cooled ventilation systems were able to decreased animal's air temperature and respiratory frequency, and the black globe temperature and humidity index (WBGT) and the radiating thermal load (RTL).