Modeling and Solution of an Unsteady Flow of a Third Grade Fluid Over an Infinite Parallel Rigid Plate Within a Porous Medium

Haruna S. Jobin, Simon K. Daniel, Peter Ayuba, Joseph K. Moses
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Abstract

It is known by many researchers that non-Newtonian fluids are regarded as important and appropriate in technological techniques and several industrial manufacturing processes such as in polymer sheet extrusion from dye, drilling of oil and gas well to mention a few. Due to such reason a model of such type of fluid called the differential type model in which the third grade fluid is categorized. The skin friction, Nusselt number, and Sherwood number through the graphs obtained, were also obtained. The nonlinear partial differential equations were solved using He – Laplace method. He – laplace method is a combination of Homotopy perturbation method with the Laplace transform method which is used in determining linear together with the nonlinear partial differential equations, and the use of He’s polynomials for the nonlinear term. Amongst many results obtained; the velocity, temperature and concentration profiles diminish due to the increase in suction parameter. Higher values of magnetic parameter decreases the fluid velocity. The temperature distribution is enhanced by the increment in radiation parameter. Upsurging values of chemical reaction decline the concentration of the fluid.
多孔介质中三阶流体在无限平行刚性板上的非定常流动模拟与求解
许多研究人员都知道,非牛顿流体在技术和一些工业制造过程中被认为是重要和合适的,例如从染料中挤出聚合物片,钻井石油和天然气井。由于这样的原因,这类流体的模型被称为差分型模型,其中第三级流体被分类。通过得到的图,得到了表面摩擦力、努塞尔数和舍伍德数。用He - Laplace方法求解了非线性偏微分方程。He - laplace方法是将同伦摄动法与拉普拉斯变换法结合起来确定线性和非线性偏微分方程,并对非线性项使用He’s多项式。在获得的许多结果中;随着吸力参数的增大,速度曲线、温度曲线和浓度曲线逐渐减小。磁参数越高,流体速度越小。温度分布随着辐射参数的增加而增强。化学反应的上升值降低了流体的浓度。
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