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首页> 外文期刊>International Journal of Heat and Mass Transfer >A new diffusion for laminar boundary layer flow of power law fluids past a flat surface with magnetic effect and suction or injection
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A new diffusion for laminar boundary layer flow of power law fluids past a flat surface with magnetic effect and suction or injection

机译:幂律流体的层流边界层流经过磁作用和抽吸或注入后通过平面的新扩散

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This paper investigates steady laminar boundary layer flow of power law fluids past a flat surface with suction or injection and magnetic effects. A new nonlinear diffusion model is proposed, which takes the effects of power law viscosity on concentration fields into account by assuming that the concentration field is similar to the velocity, with a modified Fick's law of diffusion for power law fluids. The governing strongly nonlinear partial differential equations are reduced into a set of coupled ordinary differential equations and then solved numerically by the shooting technique coupled with the Runge-Kutta scheme and the Newton's method. The effects of the Hartmann number, the suction or injection parameter, the power law index, the concentration power law index, the concentration radio parameter and the generalized Schmidt number on the velocity and the concentration fields are presented graphically and analyzed in detail.
机译:本文研究了通过吸力或注入力和磁作用经过平面的幂律流体的稳定层流边界层流。提出了一种新的非线性扩散模型,该模型考虑了幂律粘度对浓度场的影响,并假设浓度场与速度相似,并修正了幂律流体的菲克扩散定律。控制的强非线性偏微分方程被简化为一组耦合的常微分方程,然后通过与Runge-Kutta方案和牛顿法相结合的射击技术进行数值求解。给出了哈特曼数,吸力或喷射参数,幂律指数,浓度幂律指数,浓度无线电参数和广义施密特数对速度和浓度场的影响,并进行了详细分析。

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