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首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Natural convection flow of non-Newtonian power-law fluid from a slotted vertical isothermal surface
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Natural convection flow of non-Newtonian power-law fluid from a slotted vertical isothermal surface

机译:非牛顿幂律流体从狭缝垂直等温面的自然对流

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Purpose -- The paper's aim is to investigate the natural convection flow of an Ostwald-de Waele type power jaw non-Newtonian fluid past an isothermal vertical slotted surface.rnDesign/methodology/approach - The Keller-Box method is used to solve the governing boundary layer equations for the natural convection flow of an Ostwald-de Waele type power law non-Newtonian fluid past an isothermal vertical slotted surface.rnFindings - As the slip parameter increases, the friction factor increases whereas the heat transfer rate decreases. Owing to increase in the value of the Prandtl number, Pr, there is decrease in the value of the skin-friction coefficient, and augmentation of heat transfer rate. As the viscosity index n increases, both the friction factor and the heat transfer rate increase.rnResearch limitations/implications - The analysis is valid for steady, two-dimensional laminar flow of an Ostwald-de Waele type power law non-Newtonian fluid past an isothermal vertical slotted surface. An extension to three-dimensional flow case is left for future work.rnPractical implications - The method is useful to analyze perforated plates and wire netting such as perforated wings in order to reduce the drag by suction of the boundary layer, filtration or air-conditioning.rnOriginality/value - The results of this study may be of interest to engineers interested in heat transfer augmentation and drag reduction in heat exchangers.
机译:目的-本文的目的是研究经过等温垂直开缝表面的Ostwald-de Waele型动力颚式非牛顿流体的自然对流流动。设计/方法/方法-使用Keller-Box方法求解控制Ostwald-de Waele型幂定律非牛顿流体经过等温垂直开缝表面的自然对流的边界层方程。发现-随着滑移参数的增加,摩擦系数增加而传热速率减小。由于普朗特数Pr的值增加,因此皮肤摩擦系数的值减小,并且传热速率增加。随着粘度指数n的增加,摩擦系数和传热速率都将增加。研究限制/意义-该分析对于Ostwald-de Waele型幂定律非牛顿流体经过二维恒流的稳定二维层流有效。等温垂直开槽表面。三维流情况的扩展留待以后的工作。rn实践意义-该方法可用于分析多孔板和金属丝网,例如多孔翼,从而减少边界层的吸力,过滤或空调的阻力.rnOriginality / value-这项研究的结果可能对对换热器中的传热增加和减阻感兴趣的工程师感兴趣。

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