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首页> 外文期刊>Journal of Nanofluids >A New Numerical Approach to MHD Maxwellian Nanofluid Flow Past an Impulsively Stretching Sheet
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A New Numerical Approach to MHD Maxwellian Nanofluid Flow Past an Impulsively Stretching Sheet

机译:磁流体动力麦克斯韦的新的数值方法Nanofluid流过去一个冲动地伸展表

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摘要

In this paper, we consider the problem of unsteady laminar boundary layer flow, induced by an impulsive stretching sheet and heat transfer of visco elastic nanofluid. The paper combines the effects of magnetic force, elasticity number, Brownian motion, thermophoresis, Lewis number and time-dependence on the flow properties. The proposed mathematical formulation is introduced for the first time to model the boundary-layer flow and heat transfer over an impulsive stretching surface in a nanofluid. The non-linear partial differential equations that describe the flow are solved by a new bivariate spectral quasi-linearisation method based on a bivariate Lagrange interpolation collocation method. The proposed method is shown to be convergent and effective in giving accurate solutions. It is found that time, magnetic parameter, elasticity number, Brownian motion parameter, thermophoresis parameter and Lewis number all have a significant influence on the fluid velocity, temperature and nanoparticle concentration. Thermal and concentration boundary layer thickness increase with the increase of elasticity parameter. The proposed bivariate collocation method is shown to converge rapidly and gives accurate results.
机译:在本文中,我们考虑不稳定的问题层流边界层流动,诱导的冲动的伸展运动和传热粘弹性nanofluid。磁力的影响,弹性的数字,布朗运动,热泳,刘易斯和数量时间依赖性的流动特性。提出了数学公式第一次模拟边界层流动和传热的冲动拉伸nanofluid表面。偏微分方程描述流解决一个新的二元光谱基于二元quasi-linearisation方法拉格朗日插值的搭配方法。该方法收敛和显示提供准确有效的解决方案。发现,磁参数,弹性号,布朗运动参数,热泳和刘易斯数都有一个重要的参数影响流体速度、温度和纳米颗粒的浓度。浓度边界层厚度增加弹性参数的增加。提出了二元搭配方法的证明收敛迅速,给了准确的结果。

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