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Unsteady Hydromagnetic Free Convective Flow Past An Infinite Vertical Porous Plate In Porous Medium

机译:多孔介质中穿过无限垂直多孔板的非定常水磁自由对流

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摘要

The effect of heat transfer on unsteady hydromagnetic free convective flow of a viscous incompressible electrically conducting fluid flow past an infinite vertical porous plate in presence of constant injection and heat source has been investigated. The flow is subjected to transverse magnetic field. The partial differential equations governing the flow field has been derived and transformed to non-dimensional form. The equations and their respective initial and boundary conditions are then non-dimensionalized and solved numerically using finite difference method specifically, the Crank-Nicolson method. The effects of varying various flow parameters on the velocity, temperature and concentration profiles have been presented in form of graphs. This has been done when Grashof number for heat transfer, Gr q >0 (cooling of the plate) and also when Gr q <0 (heating of the plate). It has been observed that when the parameters are varied, there is an increase, decrease or no change in velocity, temperature, concentration, skin friction and rate of heat transfer on the surface of the plate. The variation of these parameters especially injection and heat source is very important especially in petroleum engineering where the engineer is able to make various decisions on how to extract fluids as they move through porous medium. Key words : Hydromagnetic, Injection, Porous Medium, Heat Source, Heat transfer
机译:研究了传热对在恒定注入和热源作用下流过无限垂直多孔板的粘性不可压缩导电流体的非稳态水磁自由对流的影响。流体受到横向磁场的作用。导出了控制流场的偏微分方程,并将其转换为无量纲形式。然后,对方程及其各自的初始条件和边界条件进行无量纲化,并使用有限差分法(具体而言是Crank-Nicolson方法)进行数值求解。各种流量参数对速度,温度和浓度曲线的影响已以图表的形式呈现。当传热的格拉斯霍夫数,Gr q> 0(板的冷却)时以及在Grq <0(板的加热)时,都可以这样做。已经观察到,当参数改变时,板表面上的速度,温度,浓度,皮肤摩擦和热传递速率增加,减少或没有变化。这些参数(尤其是注入和热源)的变化非常重要,尤其是在石油工程中,工程师可以对流体在多孔介质中流动时如何提取流体做出各种决定。关键词:磁流体注入多孔介质热源传热

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