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Non-Newtonian Natural Convection Flow along an Isothermal Horizontal Circular Cylinder Using Modified Power-law Model

机译:沿等温水平圆柱体的非牛顿自然对流流动的修正幂律模型

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Laminar two-dimensional natural convection boundary-layer flow of non-Newtonian fluids along an isothermal horizontal circular cylinder has been studied using a modified power-law viscosity model. In this model, there are no unrealistic limits of zero or infinite viscosity. Therefore, the boundary-layer equations can be solved numerically by using marching order implicit finite difference method with double sweep technique. Numerical results are presented for the case of shear-thinning as well as shear thickening fluids in terms of the fluid velocity and temperature distributions, shear stresses and rate of heat transfer in terms of the local skin-friction and local Nusselt number respectively.
机译:利用修正的幂律粘度模型研究了非牛顿流体沿等温水平圆柱的层流二维自然对流边界层流。在此模型中,不存在不现实的零或无限粘度极限。因此,边界层方程可以通过采用双扫描技术的行进阶隐式有限差分方法来数值求解。分别根据流体的速度和温度分布,剪切应力和传热速率(分别基于局部皮肤摩擦和局部Nusselt数),给出了稀疏剪切和增稠流体的数值结果。

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