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首页> 外文期刊>Advances in Mechanical Engineering >Non-Newtonian Natural Convection Flow along a Horizontal Circular Cylinder with Uniform Surface Heat Flux
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Non-Newtonian Natural Convection Flow along a Horizontal Circular Cylinder with Uniform Surface Heat Flux

机译:沿表面均匀通量的水平圆柱体的非牛顿自然对流

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摘要

Laminar two-dimensional natural convection boundary-layer flow of non-Newtonian fluids along a horizontal circular cylinder with uniform surface heat flux has been studied using a modified power-law viscosity model. In this model, there are no unrealistic limits of zero or infinite viscosity; consequently, no irremovable singularities are introduced into boundary-layer formulation for such fluids. 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 coefficient 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水平圆柱体的层流二维自然对流边界层流,该圆柱流具有均匀的表面热通量。在这个模型中,没有零或无限粘度的不切实际的限制。因此,没有将不可去除的奇异性引入此类流体的边界层配方中。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。对于剪切稀化和剪切增稠流体,分别以流体速度和温度分布,剪切应力和传热速率(以局部皮肤摩擦系数和局部Nusselt数表示)给出了数值结果。

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