Numerical Study of a Williamson Fluid Past a Semi-Infinite Vertical Plate with Convective Heating and Radiation Effects

C. Amanulla, Abderrahim Wakif, S. Saleem
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引用次数: 11

Abstract

In the present paper, we investigated mathematical model of the magnetohydrodynamic flow and heat transfer in an electro-conductive polymer on the externalsurface of a semi-infinite vertical plate under radial magnetic field. Thermal radiation andconvective heating effects are considered at the semi-infinite plate surface with modifiedboundary conditions. The Williamson viscoelastic model is employed which isrepresentative of certain industrial polymers. The non-dimensional, transformedboundary layer equations for momentum and energy are solved with the second orderaccurate implicit Keller box finite difference method under appropriate boundaryconditions. Validation of the numerical solutions is achieved via benchmarking withearlier published results. The influence of Williamson viscoelastic fluid parameter,magnetic body force parameter, convective heating, radiation parameter, stream wisevariable and Prandtl number on thermos-fluid characteristics are studied graphically. Themodel is relevant to the simulation of magnetic polymer materials processing.
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具有对流加热和辐射效应的半无限垂直板上的Williamson流体的数值研究
本文研究了径向磁场作用下半无限大垂直板外表面导电聚合物的磁流体动力学流动和传热的数学模型。在修正边界条件下,考虑了半无限平板表面的热辐射和对流加热效应。本文采用了代表某些工业聚合物的Williamson粘弹性模型。在适当的边界条件下,用二阶精确隐式Keller盒有限差分法求解了动量和能量的无量纲变换边界层方程。数值解的验证是通过对先前发表的结果进行基准测试来实现的。研究了威廉姆森粘弹性流体参数、磁体力参数、对流加热、辐射参数、流态变量和普朗特数对热流体特性的影响。该模型适用于磁性高分子材料加工过程的仿真。
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