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首页> 外文期刊>Journal of Applied Mathematics and Physics >Numerical Solution of MHD Convection and Mass Transfer Flow of Viscous Incompressible Fluid about an Inclined Plate with Hall Current and Constant Heat Flux
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Numerical Solution of MHD Convection and Mass Transfer Flow of Viscous Incompressible Fluid about an Inclined Plate with Hall Current and Constant Heat Flux

机译:具有霍尔电流和恒定热通量的倾斜板绕粘性不可压缩流体的MHD对流和传质流的数值解

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The present numerically study investigates the influence of the Hall current and constant heat flux on the Magneto hydrodynamic (MHD) natural convection boundary layer viscous incompressible fluid flow in the manifestation of transverse magnetic field near an inclined vertical permeable flat plate. It is assumed that the induced magnetic field is negligible compared with the imposed magnetic field. The governing boundary layer equations have been transferred into non-similar model by implementing similarity approaches. The physical dimensionless parameter has been set up into the model as Prandtl number, Eckert number, Magnetic parameter, Schmidt number, local Grashof number and local modified Grashof number. The numerical method of Nactsheim-Swigert shooting iteration technique together with Runge-Kutta six order iteration scheme has been used to solve the system of governing non-similar equations. The physical effects of the various parameters on dimensionless primary velocity profile, secondary velocity profile, and temperature and concentration profile are discussed graphically. Moreover, the local skin friction coefficient, the local Nusselt number and Sherwood number are shown in tabular form for various values of the parameters.
机译:目前的数值研究调查了霍尔电流和恒定热通量对磁流体动力学(MHD)自然对流边界层粘性不可压缩流体流动的影响,该磁场以倾斜垂直可渗透平板附近的横向磁场为表现形式。假设感应磁场与施加磁场相比可以忽略不计。通过实施相似性方法,控制边界层方程已转换为非相似模型。已在模型中设置了物理无量纲参数,包括普朗特数,埃克特数,磁参数,施密特数,局部Grashof数和局部修改的Grashof数。 Nactsheim-Swigert射击迭代技术的数值方法与Runge-Kutta六阶迭代方案一起用于求解控制非相似方程的系统。图形化地讨论了各种参数对无量纲初级速度分布图,次级速度分布图以及温度和浓度分布图的物理影响。此外,以表格形式显示了各种参数值的局部皮肤摩擦系数,局部Nusselt数和Sherwood数。

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