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Numerical solution to natural convection over an inclined wavy surface embedded in a porous medium saturated with a nanofluid

机译:内含纳米流体的多孔介质中倾斜波浪表面自然对流的数值解

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This article presents the study of natural convection in a nanofluid along an inclined wavy surface embedded in a porous medium. A coordinate transformation is employed to transform the complex wavy surface to a smooth surface. The governing equations are transformed into a set of ordinary differential equations using the similarity transformation. These nonlinear ordinary differential equations are reduced to a system of linear differential equations using the successive linearization method. The Chebyshev pseudo spectral method is then used to solve the linearized differential equations. The present results are compared with previously published work and are found to be in very good agreement. The effects of Brownian motion parameter, thermophoresis parameter, amplitude of the wavy surface, angle of inclination of the wavy surface on the non-dimensional velocity, temperature, nanoparticle volume fraction, heat and nanoparticle mass transfer rates are studied and presented graphically.
机译:本文介绍了纳米流体沿着嵌入多孔介质中的倾斜波浪形表面的自然对流的研究。使用坐标变换将复杂的波浪表面变换为平滑表面。使用相似变换将控制方程转换为一组常微分方程。使用连续线性化方法将这些非线性常微分方程简化为线性微分方程组。然后使用Chebyshev伪谱方法求解线性化的微分方程。将目前的结果与先前发表的工作进行比较,发现结果非常吻合。研究了布朗运动参数,热泳参数,波浪表面的振幅,波浪表面的倾斜角度对无量纲速度,温度,纳米颗粒体积分数,热和纳米颗粒传质速率的影响。

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