首页> 外文期刊>International Journal of Mechanical Sciences >Effects of variable fluid properties and thermophoresis on unsteady forced convective boundary layer flow along a permeable stretching/shrinking wedge with variable Prandtl and Schmidt numbers
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Effects of variable fluid properties and thermophoresis on unsteady forced convective boundary layer flow along a permeable stretching/shrinking wedge with variable Prandtl and Schmidt numbers

机译:可变流体特性和热泳对沿具有可变Prandtl和Schmidt数的可渗透拉伸/收缩楔形的非恒定强迫对流边界层流的影响

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In this paper, the effects of variable fluid properties and thermophoresis on unsteady forced convective boundary layer flow along a permeable stretching/shrinking wedge are studied numerically. The analysis accounts for temperature dependent viscosity and thermal conductivity. The governing time dependent nonlinear partial differential equations are reduced to a set of nonlinear ordinary differential equations by the similarity transformations. The resulting local similarity equations are solved numerically by Nachtsheim-Swigert shooting iteration technique with sixth order Runge-Kutta integration scheme. Comparison with previously published work is performed and the results are found to be in excellent agreement. Numerical results for the non-dimensional velocity, temperature and concentration profiles as well as the variable Prandtl number and the variable Schmidt number are displayed graphically for several sets of material parameters. The effects of the model parameters on the local skin friction coefficient, the rate of heat and mass transfer, and the thermophoretic particle deposition velocity are also tabulated. The results show that for the flow with variable thermal conductivity, the Prandtl number as well as the Schmidt number varies significantly within the boundary layer. Thus, in any physical model where fluid transport properties are temperature dependent, the Prandtl number and the Schmidt number within the boundary layer should be considered as variables rather than constants. (c) 2015 Elsevier Ltd. All rights reserved.
机译:本文研究了可变流体特性和热泳对沿渗透性伸缩收缩楔块非恒定对流边界层流动的影响。该分析考虑了取决于温度的粘度和热导率。通过相似变换将控制时间相关的非线性偏微分方程简化为一组非线性常微分方程。通过Nachtsheim-Swigert射击迭代技术和六阶Runge-Kutta积分方案,对所得的局部相似性方程进行数值求解。与以前发表的作品进行了比较,结果非常一致。对于几组材料参数,以图形方式显示了无量纲速度,温度和浓度曲线的数值结果,以及可变的Prandtl数和可变的Schmidt数。还列出了模型参数对局部皮​​肤摩擦系数,传热和传质速率以及热泳颗粒沉积速度的影响。结果表明,对于具有可变热导率的流,边界层内的Prandtl数和Schmidt数均发生显着变化。因此,在流体传输属性与温度有关的任何物理模型中,边界层内的Prandtl数和Schmidt数应视为变量而不是常数。 (c)2015 Elsevier Ltd.保留所有权利。

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