3 resultados para GELLAN GUM

em Instituto Politécnico do Porto, Portugal


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This study aimed to carry out experimental work to determine, for Newtonian and non-Newtonian fluids, the friction factor (fc) with simultaneous heat transfer, at constant wall temperature as boundary condition, in fully developed laminar flow inside a vertical helical coil. The Newtonian fluids studied were aqueous solutions of glycerol, 25%, 36%, 43%, 59% and 78% (w/w). The non-Newtonian fluids were aqueous solutions of carboxymethylcellulose (CMC), a polymer, with concentrations of 0.2%, 0.3%, 0.4% and 0.6% (w/w) and aqueous solutions of xanthan gum (XG), another polymer, with concentrations of 0.1% and 0.2% (w/w). According to the rheological study done, the polymer solutions had shear-thinning behavior and different values of viscoelasticity. The helical coil used has an internal diameter, curvature ratio, length and pitch, respectively: 0.00483 m, 0.0263, 5.0 m and 11.34 mm. It was concluded that the friction factors, with simultaneous heat transfer, for Newtonian fluids can be calculated using expressions from literature for isothermal flows. The friction factors for CMC and XG solutions are similar to those for Newtonian fluids when the Dean number, based in a generalized Reynolds number, is less than 80. For Dean numbers higher than 80, the friction factors of the CMC solutions are lower those of the XG solutions and of the Newtonian fluids. In this range the friction factors decrease with the increase of the viscometric component of the solution and increase for increasing elastic component. The change of behavior at Dean number 80, for Newtonian and non-Newtonian fluids, is in accordance with the study of Ali [4]. There is a change of behavior at Dean number 80, for Newtonian and non-Newtonian fluids, which is in according to previous studies. The data also showed that the use of the bulk temperature or of the film temperature to calculate the physical properties of the fluid has a residual effect in the friction factor values.

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This study aimed to carry out experimental work to obtain, for Newtonian and non-Newtonian fluids, heat transfer coefficients, at constant wall temperature as boundary condition, in fully developed laminar flow inside a helical coil. The Newtonian fluids studied were aqueous solutions of glycerol, 25%, 36%, 43%, 59% and 78% (w/w) and the non-Newtonian fluids aqueous solutions of carboxymethylcellulose (CMC), a polymer, with concentrations 0.1%, 0.2%, 0.3%, 0.4% and 0.6% (w/w) and aqueous solutions of xanthan gum (XG), another polymer, with concentrations 0.1% and 0.2% (w/w). According to the rheological study performed, the polymer solutions had shear thinning behavior and different values of elasticity. The helical coil used has internal diameter, curvature ratio, length and pitch, respectively: 0.004575 m, 0.0263, 5.0 m and 11.34 mm. The Nusselt numbers for the CMC solutions are, on average, slightly higher than those for Newtonian fluids, for identical Prandtl and generalized Dean numbers. As outcome, the viscous component of the shear thinning polymer tends to potentiate the mixing effect of the Dean cells. The Nusselt numbers of the XG solutions are significant lower than those of the Newtonian solutions, for identical Prandtl and generalized Dean numbers. Therefore, the elastic component of the polymer tends to diminish the mixing effect of the Dean cells. A global correlation, for Nusselt number as a function of Péclet, generalized Dean and Weissenberg numbers for all Newtonian and non-Newtonian solutions studied, is presented.

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A crescente incorporação das evoluções tecnológicas nos equipamentos médicos modernos, além de os tornar mais compactos e precisos, proporciona igualmente ganhos de outros benefícios importantes, especialmente ao nível da eficiência das terapias prescritas aos pacientes. Os sofisticados ventiladores pulmonares de cuidados intensivos do presente espelham perfeitamente esta realidade e por isso necessitam de procedimentos técnicos de verificação metrológica – calibrações, também eles mais exatos e rastreáveis, de modo a fornecerem informações corretas sobre se o estado de funcionamento de um determinado ventilador cumpre ou não as tolerâncias declaradas pelo seu fabricante. Através da presente dissertação pretendeu-se desenvolver um procedimento técnico de calibração dos ventiladores de cuidados intensivos tendo-se estudado, para esta finalidade, os equipamentos de calibração específicos disponíveis no mercado, a normalização e o enquadramento regulamentar do controlo metrológico aplicáveis, bem como o princípio de funcionamento do ventilador pulmonar e a evolução da ventilação mecânica ocorrida. No domínio da abordagem efetuada sobre o âmbito da metrologia, implementou-se a determinação das incertezas dos resultados das calibrações efetuadas pelo procedimento técnico desenvolvido, de acordo com a metodologia constante do GUM1. Considerando ainda os défices significativos de conhecimento da metrologia e da prática do controlo metrológico no setor da saúde, a par dos riscos inerentes para os próprios pacientes, procura-se contribuir com este trabalho, de uma forma transversal e ampla, para uma maior consciencialização, quer dos profissionais de saúde, quer dos gestores envolvidos, para a relevância da realização das calibrações periódicas dos complexos equipamentos de suporte de vida que são os ventiladores pulmonares de cuidados intensivos.