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Combined Effect of Buoyancy Force and Navier Slip on MHD Flow of a Nanofluid over a Convectively Heated Vertical Porous Plate

机译:浮力和Navier滑移对对流加热垂直多孔板上纳米流体MHD流动的综合影响

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摘要

We examine the effect of magnetic field on boundary layer flow of an incompressible electrically conducting water-based nanofluids past a convectively heated vertical porous plate with Navier slip boundary condition. A suitable similarity transformation is employed to reduce the governing partial differential equations into nonlinear ordinary differential equations, which are solved numerically by employing fourth-order Runge-Kutta with a shooting technique. Three different water-based nanofluids containing copper (Cu), aluminium oxide (Al2O3), and titanium dioxide (TiO2) are taken into consideration. Graphical results are presented and discussed quantitatively with respect to the influence of pertinent parameters, such as solid volume fraction of nanoparticles (φ), magnetic field parameter (Ha), buoyancy effect (Gr), Eckert number (Ec), suction/injection parameter (f w), Biot number (Bi), and slip parameter (β), on the dimensionless velocity, temperature, skin friction coefficient, and heat transfer rate.
机译:我们研究了磁场对不可压缩的导电水基纳米流体通过对流加热的垂直多孔板(具有Navier滑移边界条件)的边界层流动的影响。采用适当的相似性变换,将控制的偏微分方程简化为非线性常微分方程,通过使用四阶Runge-Kutta和射击技术对其进行数值求解。考虑了包含铜(Cu),氧化铝(Al2O3)和二氧化钛(TiO2)的三种不同的水基纳米流体。关于相关参数的影响,定量地给出并讨论了图形结果,例如纳米粒子的固体体积分数(φ),磁场参数(Ha),浮力效应(Gr),埃克特数(Ec),吸力/喷射参数(fw),比奥数(Bi)和滑移参数(β),涉及无量纲速度,温度,皮肤摩擦系数和传热速率。

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