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首页> 外文期刊>American Journal of Applied Mathematics >On chemically reacting hydromagnetic flow over a flat surface in the presence of radiation with viscous dissipation and convective boundary conditions
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On chemically reacting hydromagnetic flow over a flat surface in the presence of radiation with viscous dissipation and convective boundary conditions

机译:在存在具有粘性耗散和对流边界条件的辐射的情况下,在平坦表面上对水电磁流进行化学反应

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This paper presents an investigation of the hydromagnetic flow over a flat surface with convective boundary conditions and internal heat generation in the presence of chemical reaction. The Newton-Raphson shooting method along with the fourth-order Runge-Kutta integration algorithm has been employed to tackle the third order, nonlinear boundary layer equation governing the problem. Results have been graphically displayed and discussed quantitatively to show some interesting aspects of the controlling parameters on the dimensionless axial velocity, temperature and the concentration profiles, local skin friction, and the rate of heat and mass transfer. Comparison of the numerical results of the present paper with earlier published works under some special cases showed consistency.
机译:本文介绍了在对流边界条件和化学反应存在下内部热量产生的情况下,在平坦表面上的磁流体流动的研究。牛顿-拉夫森射击方法与四阶Runge-Kutta积分算法一起用于解决控制该问题的三阶非线性边界层方程。结果已以图形方式显示和定量讨论,以显示控制参数在无因次轴向速度,温度和浓度曲线,局部皮肤摩擦以及传热和传质速率方面的一些有趣方面。在某些特殊情况下,本论文的数值结果与较早发表的论文进行了比较。

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