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首页> 外文期刊>Indian Journal of Pure & Applied Physics >Soret and Dufour effects on MHD flow with heat and mass transfer past a permeable stretching sheet in presence of thermal radiation
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Soret and Dufour effects on MHD flow with heat and mass transfer past a permeable stretching sheet in presence of thermal radiation

机译:Soret和Dufour在存在热辐射的情况下,通过传热拉伸片的传热和传质对MHD流动的影响

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An analysis has been carried out to study the combined effects of the magnetic field, Joule heating, thermal radiation absorption, viscous dissipation, Buoyancy forces, thermal-diffusion and diffusion-thermion the convective heat and mass transfer flow of an electrically conducting fluid over a permeable vertically stretching sheet. The boundary layer equations for the fluid flow, heat and mass flux under consideration have been obtained and reduced into a system of non-linear ordinary differential equations by using appropriate similarity transformation. Using shooting method coupled with the fourth order Runge-Kutta integration scheme, the numerically solutions have been obtained and presented graphically. The effects of various embedded thermo-physical parameters on the fluid velocity, temperature, skin friction, Nusselt number and Sherwood number have been determined and discussed quantitatively. A comparison of a special case of our results with the one previously reported in the literature shows a very good agreement. An increase in values of thermal radiation, viscous dissipation, suction/injection coefficient and chemical reaction results in the increase of velocity, temperature and heat-mass transfer rates. It is further noted that the velocity, temperature and heat-mass transfer rates reduces on the boundary layer of a permeable vertical stretching sheet due to increase in the values of Soret or decrease in values of Dufour. Further, this work leads to study different flows of electrically conducting fluid over a permeable vertical stretching sheet problem that includes the two dimensional non-linear boundary equations.
机译:已经进行了分析,以研究磁场,焦耳加热,热辐射吸收,粘性耗散,浮力,热扩散和扩散热的组合效应,以及导电流体在空气中的对流传热和传质流。可渗透的垂直拉伸片。已经获得了考虑中的流体流动,热量和质量通量的边界层方程,并通过使用适当的相似变换将其简化为非线性常微分方程组。使用射击方法并结合四阶Runge-Kutta积分方案,获得了数值解并以图形方式给出。已经确定并定量讨论了各种嵌入的热物理参数对流体速度,温度,皮肤摩擦,努塞尔数和舍伍德数的影响。将我们的研究结果的一种特殊情况与文献中先前报道的结果进行比较,可以很好地达成共识。热辐射,粘性耗散,吸力/喷射系数和化学反应的值增加,导致速度,温度和热质传递速率的增加。还应注意的是,由于Soret值的增加或Dufour值的减少,在渗透性垂直拉伸片的边界层上的速度,温度和热质传递速率降低。此外,这项工作导致研究了包括二维非线性边界方程在内的可渗透垂直拉伸片问题上导电流体的不同流动。

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