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Radiative MHD thin film flow of Williamson fluid over an unsteady permeable stretching sheet

机译:威廉姆森流体在不稳定渗透性拉伸片上的辐射MHD薄膜流

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摘要

In this research work we have examined the flow of Williamson liquid film fluid with heat transmission and having the impact of thermal radiation embedded in a permeable medium over a time dependent stretching surface. The fluid flow of liquid films is assumed in two dimensions. By using suitable similarity transformation the governing non-linear partial differential equations have been transformed into non-linear differential equations. An optimal approach has been used to acquire the solution of the modelled problem. The convergence of the technique has been shown numerically. The impact of the Skin friction and Nusslet number and their influence on thin film flow are shown numerically. Thermal radiation, unsteadiness effect and porosity have mainly focused in this paper. Furthermore, for conception and physical demonstration the entrenched parameters, like porosity parameter k, Prandtl number Pr, unsteadiness parameter S, Radiation parameter Rd, Magnetic parameter M, and Williamson fluid parameter have been discussed graphically in detail with their effect on liquid film flow.
机译:在这项研究工作中,我们研究了具有时间流逝的拉伸表面上传热并具有热辐射影响的威廉姆森液膜流体的流动,这些流体嵌入了可渗透介质中。假定液膜的流体流动是二维的。通过使用适当的相似性变换,已将控制非线性偏微分方程转换为非线性微分方程。一种最佳方法已用于获取建模问题的解决方案。数字显示了该技术的收敛性。数值显示了皮肤摩擦和Nusslet数的影响及其对薄膜流动的影响。本文主要关注热辐射,不稳定效应和孔隙率。此外,为了进行概念设计和物理演示,诸如孔隙度参数 k ,Prandtl号 Pr ,不稳定参数 S ,辐射参数 R d ,磁参数 M 和威廉姆森流体参数已详细讨论了其对液体的影响电影流。

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