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Stagnation Point Flow Past a Stretching Sheet in a Nanofluid with Slip Condition

机译:停滞点流过纳米流体的拉伸板,滑动条件

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In this study, the numerical investigation of stagnation point flow past a stretching sheet in nanofluid with velocity slip condition and constant wall temperature is considered. The governing equations for the model which is in non linear partial differential equations are first transformed to ordinary differential equation by using similarity transformation. This ordinary differential equations are solved numerically by using the Runge-Kutta-Fehlberg method. Numerical solutions are obtained for the reduced Nusselt, Sherwood number and skin friction coefficient. Further, the effects of slip parameter on Nusselt and Sherwood number are analyzed and discussed. It is graphically shown that the velocity slip parameter has a capability to enhanced the skin friction coefficient.
机译:在该研究中,考虑了纳米流体中拉伸片的停滞点流动的数值研究,具有速度滑动条件和恒定壁温。通过使用相似性转换,首先将用于非线性偏微分方程中的模型的控制方程被转换为常微分方程。通过使用Runge-Kutta-Fehlberg方法,在数值上解决该常微分方程。获得数值溶液,用于降低的南瓜,舍伍德数和皮肤摩擦系数。此外,分析并讨论了SLIP参数对NURSELT和SHERWOOD数的影响。图形方式示出了速度滑移参数具有增强皮肤摩擦系数的能力。

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