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Analytical solutions of the boundary layer flow of power-law fluid over a power-law stretching surface

机译:幂律拉伸面上的幂律流体边界层流的解析解

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This article discusses analytical solutions for a nonlinear problem arising in the boundary layer flow of power-law fluid over a power-law stretching surface. Using perturbation method analytical solution is presented for linear stretching surface. This solution covers large range of shear thinning and shear thickening fluids and matches excellently with the numerical solution. Furthermore, some new exact solutions are found for particular combination of m (power-law stretching index) and n (power-law fluid index). This leads to generalize the case of linear stretching to nonlinear stretching surface. The effects of fluid index n on the boundary layer thickness and the skin friction for nonlinear stretching surface is analyzed and discussed. It is observed that the boundary layer thickness and the skin friction coefficient increase as non-linear parameter n decreases. This study gives a new dimension to obtain analytical solutions asymptotically for highly nonlinear problems which to the best of our knowledge has not been examined so far.
机译:本文讨论了在幂律拉伸面上的幂律流体边界层流动中产生的非线性问题的解析解。利用摄动法给出了线性拉伸表面的解析解。该解决方案涵盖了大范围的剪切稀化和剪切增稠流体,并且与数值解非常匹配。此外,对于m(幂律拉伸指数)和n(幂律流体指数)的特定组合,找到了一些新的精确解。这导致将线性拉伸的情况推广到非线性拉伸表面的情况。分析和讨论了流体指数n对非线性拉伸表面边界层厚度和皮肤摩擦的影响。观察到边界层厚度和皮肤摩擦系数随着非线性参数n的减小而增加。这项研究提供了一个新的维度,可以渐近地获得高度非线性问题的解析解,据我们所知,到目前为止,尚未解决该问题。

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