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Numerical solution for boundary layer flow due to a nonlinearly stretching sheet with variable thickness and slip velocity

机译:厚度和滑移速度可变的非线性拉伸板引起的边界层流动的数值解

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This article presents a numerical solution for the flow of a Newtonian fluid over an impermeable stretching sheet with a power law surface velocity, slip velocity and variable thickness. The flow is caused by a nonlinear stretching of a sheet. The governing partial differential equations are transformed into a nonlinear ordinary differential equation which is using appropriate boundary conditions for various physical parameters. The numerical solutions of the resulting nonlinear ODEs are found by using the efficient finite difference method (FDM). The effects of the slip parameter and the wall thickness parameter on the flow profile are presented. Moreover, the local skin friction is presented. Comparison of the obtained numerical results is made with previously published results in some special cases, and excellent agreement is noted. The results attained in this paper confirm the idea that FDM is a powerful mathematical tool and can be applied to a large class of linear and nonlinear problems arising in different fields of science and engineering.
机译:本文提出了具有幂律表面速度,滑移速度和可变厚度的牛顿流体在不可渗透拉伸片上流动的数值解。流动是由片材的非线性拉伸引起的。控制性偏微分方程被转换为非线性常微分方程,该非线性常微分方程针对各种物理参数使用适当的边界条件。使用有效的有限差分法(FDM)可以找到所得非线性ODE的数值解。给出了滑移参数和壁厚参数对流量分布的影响。此外,呈现了局部皮肤摩擦。在某些特殊情况下,将所得数值结果与以前发表的结果进行了比较,并指出了极好的一致性。本文获得的结果证实了FDM是一种功能强大的数学工具的思想,并且可以应用于在科学和工程学的不同领域中产生的大量线性和非线性问题。

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