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Combined similarity-numerical solutions of MHD boundary layer slip flow of non-newtonian power-law nanofluids over a radiating moving plate

机译:非牛顿幂律纳米流体在辐射运动板上的MHD边界层滑流的组合相似数值解

摘要

A combined similarity-numerical solution of the magnetohydrodynamic boundary layer slip flow of an electrically conducting non-Newtonian power-law nanofluid along a heated radiating moving vertical plate is explored. Our nanofluid model incorporates the influences of the thermophoresis and the Brownian motion. The basic transport equations are made dimensionless first and then suitable similarity transformations are applied to reduce them into a set of nonlinear ordinary differential equations with the associated boundary conditions. The reduced equations are then solved numerically. Graphical results for the non-dimensional flow velocity, the temperature and the nanoparticles volume fraction profiles as well as for the friction factor, the local Nusselt and the Sherwood numbers are exhibited and examined for various values of the controlling parameters to display the interesting aspects of the solutions. It was found that the friction factor increases with the increase of the magnetic field (M), whilst it is decreased with the linear momentum slip parameter (a). The linear momentum slip parameter (a) reduces the heat transfer rates and the nanoparticles volume fraction rates. Our results are compatible with the existing results for a special case.
机译:研究了沿加热辐射移动垂直板的导电非牛顿幂律纳米流体的磁流体动力学边界层滑流的组合相似数值解。我们的纳米流体模型结合了热泳和布朗运动的影响。首先使基本输运方程变为无量纲,然后进行适当的相似度转换,以将它们简化为带有相关边界条件的一组非线性常微分方程。然后对简化的方程进行数值求解。展示了无量纲流速,温度和纳米颗粒体积分数分布以及摩擦系数,局部Nusselt和Sherwood数的图形结果,并检查了各种控制参数值,以显示出有趣的方面。解决方案。已经发现,摩擦因数随磁场(M)的增加而增加,而随线性动量滑移参数(a)而减小。线性动量滑移参数(a)降低了传热速率和纳米颗粒的体积分数速率。我们的结果与特殊情况下的现有结果兼容。

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