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Unsteady free convective non-homogeneous nanofluid flow past a moving vertical plate

机译:不稳定的自由对流非均质纳米流体流过移动垂直板

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The unsteady free convection flow of a non-homogeneous nanofluid over a uniformly moving vertical plate is investigated. The two imperative parameters associated with nanoparticle-based fluid mixture i.e. thermophoresis and Brownian motion effects are considered by applying Buongiorno's model with passively controlled nanoparticle concentration at the boundary. The nonlinear partial differential equations are reduced to dimensionless forms and then numerically solved using the Crank-Nicolson method. The impact of time, thermophoresis and Brownian motion on nanofluid velocity, temperature, nanoparticle concentration, local and average Nusselt numbers and skin-friction are investigated and presented. The Nusselt number is found to be enhanced with the increase of Brownian motion parameter. However, the opposite trends are observed for the thermophoresis parameter. The average skin-friction is found to be increasing with an increase in Brownian motion parameter. The present local Nusselt numbers for limiting case at different Prandtl numbers are observed to be in good agreement with the pure fluid correlation results, which verifies the accuracy of the numerical scheme.
机译:研究了在均匀移动的垂直板上的非均匀纳米流体的不稳定的自由对流流。通过在边界处的被动控制的纳米颗粒浓度应用Buongiorno模型考虑了与纳米粒子的流体混合物相关的两个势在一体参数。非线性偏微分方程被减少到无量纲形式,然后使用曲柄 - 尼古尔森方法进行数值求解。研究了时间,耐热性和褐色运动对纳米流体速度,温度,纳米颗粒浓度,局部和平均营养数和皮肤摩擦的影响。发现纽带数量随着布朗运动参数的增加而增强。然而,对于热孔参数观察到相反的趋势。发现平均皮肤摩擦随着布朗运动参数的增加而增加。观察到用于限制案例的本地营销号码与纯粹的流体相关结果很好,这验证了数值方案的准确性。

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