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Magnetohydrodynamic (MHD) boundary layer heat and mass transfer characteristics of nanofluid over a vertical cone under convective boundary condition

机译:对流边界条件下垂直锥上纳米流体的磁流体动力学(MHD)边界层传热和传质特性

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摘要

This paper investigates the boundary layer flow, heat and mass transfer characteristics over a vertical cone filled with nanofluid saturated porous medium with the influence of magnetic field, thermal radiation and first order chemical reaction subject to the convective boundary condition. Similarity transformation technique is used for the purpose of converting non-linear partial differential equations into the system of complex ordinary differential equations. The computational Finite element method has been employed to solve the flow, heat and mass transfer equations together with boundary conditions. The impact of various pertinent parameters on hydrodynamic, thermal and solutal boundary layers is investigated and the results are displayed graphically. Furthermore, the values of local skin-friction coefficient, rate of temperature and rate of concentration is also calculated and the results are presented graphically. The comparisons with previously published work is made and found good agreement. The thickness of thermal boundary layer is increased with increase in the values of Brownian motion parameter (Nb) and thermophoresis parameter (Nt).
机译:本文研究了在垂直对流边界条件下,磁场,热辐射和一阶化学反应的影响下,填充了纳米流体饱和多孔介质的垂直锥体的边界层流动,传热和传质特性。为了将非线性偏微分方程转换为复常微分方程组,使用了相似变换技术。计算有限元方法已被用于求解流动,传热和传质方程以及边界条件。研究了各种相关参数对流体动力,热力和溶质边界层的影响,并以图形方式显示了结果。此外,还计算了局部皮肤摩擦系数,温度速率和浓度速率的值,并以图形方式显示了结果。与以前发表的作品进行了比较,并发现了很好的一致性。随着布朗运动参数(Nb)和热泳参数(Nt)值的增加,热边界层的厚度增加。

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