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Heat and Mass Transfer in the Boundary Layer of Unsteady Viscous Nanofluid along a Vertical Stretching Sheet

机译:非稳态粘性纳米流体边界层沿垂直拉伸片的传热传质

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Heat and mass transfer in the boundary-layer flow of unsteady viscous nanofluid along a vertical stretching sheet in the presence of magnetic field, thermal radiation, heat generation, and chemical reaction are presented in this paper. The sheet is situated in the xz-plane and y is normal to the surface directing towards the positive y-axis. The sheet is continuously stretching in the positive x-axis and the external magnetic field is applied to the system parallel to the positive y-axis. With the help of similarity transformations, the partial differential equations are transformed into a couple of nonlinear ordinary differential equations. The new problem is then solved numerically by a finite-difference scheme known as the Keller-box method. Effects of the necessary parameters in the flow field are explicitly studied and briefly explained graphically and in tabular form. For the selected values of the pertinent parameters appearing in the governing equations, numerical results of velocity, temperature, concentration, skin friction coefficient, Nusselt number, and Sherwood number are obtained. The results are compared to the works of others (from previously published journals) and they are found in excellent agreement.
机译:本文介绍了在磁场,热辐射,生热和化学反应存在的情况下,非稳态粘性纳米流体沿垂直拉伸片在边界层流中的传热和传质。薄片位于xz平面中,y垂直于朝向正y轴的表面。片材在x轴正方向上连续拉伸,并且外部磁场平行于y轴方向施加到系统上。借助相似变换,将偏微分方程转换为一对非线性常微分方程。然后,通过称为Keller-box方法的有限差分方案在数值上解决新问题。显式地研究了必要参数在流场中的作用,并以图表和表格形式简要地进行了解释。对于控制方程中出现的相关参数的选定值,可获得速度,温度,浓度,皮肤摩擦系数,努塞尔数和舍伍德数的数值结果。将结果与其他人的作品(来自先前发表的期刊)进行比较,发现它们之间具有极好的一致性。

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