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On the effectiveness of variable properties and thermophoresis on steady MHD heat and mass transfer over a porous flat surface

机译:关于可变性质和热泳对多孔平面上稳定MHD传热和传质的有效性

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Purpose - The purpose of this paper is to examine the effects of thermophoresis and magnetic field on steady two-dimensional laminar hydrodynamic flow with heat and mass transfer over a semi-infinite permeable flat surface in the presence of viscous dissipation and thermal radiation effects. The fluid viscosity and thermal conductivity are assumed to vary as a function of temperature. Design/methodology/approach - The boundary layer equations are transformed to non-linear ordinary differential equations using scaling group of transformations and these equations are solved numerically by using the fourth order Runge-Kutta method with shooting technique for some values of physical parameters. Findings - Some of the results obtained for a special case of the problem are compared to the results published in previous work and are found to be in excellent agreement. Many results are obtained and a representative set is displayed graphically to illustrate the influence of the physical parameters involved in the problem on the velocity, temperature and concentration profiles, as well as the local skin-friction coefficient, the wall heat transfer and the particle deposition rate. Research limitations/implications - One valuable, important observation is that the effect of the variable viscosity parameter is to increase the effect of all studied parameters in the boundary-layer's flow field. Also, the skin-friction coefficient, wall heat transfer and wall deposition flux in a fluid of uniform viscosity are higher than in a fluid of non-uniform viscosity when the surface is permeable. Originality/value - The paper presents a numerical solution for two-dimensional boundary-layer flow with heat and mass transfer over a semi-infinite permeable flat surface. Numerical results indicate that the combining effects of magnetic field and radiation strongly controls flow and mass transfer characteristics for the thermophoretic hydrodynamic flow. This problem is interesting from the physical point of view and also for its applications in engineering sciences.
机译:目的-本文的目的是研究在存在粘性耗散和热辐射效应的情况下,热传导和磁场对半二维可渗透平面上传热和传质的稳定二维层流流体动力的影响。假定流体粘度和导热率随温度而变化。设计/方法/方法-使用缩放比例转换组将边界层方程转换为非线性常微分方程,并使用四阶Runge-Kutta方法结合射击技术对某些物理参数值进行数值求解。发现-将针对特殊问题的某些结果与先前工作中发布的结果进行了比较,发现它们之间具有极好的一致性。获得了许多结果,并以图形方式显示了代表集,以说明问题中涉及的物理参数对速度,温度和浓度分布以及局部皮肤摩擦系数,壁热传递和颗粒沉积的影响。率。研究的局限性/意义-一个有价值的重要观察结果是,可变粘度参数的作用是增加边界层流场中所有已研究参数的作用。而且,当表面是可渗透的时,具有均匀粘度的流体中的皮肤摩擦系数,壁传热和壁沉积通量高于具有非均匀粘度的流体中的皮肤摩擦系数,壁传热和壁沉积通量。原创性/价值-本文提出了一个二维边界层流动的数值解,该流动在半无限的可渗透平面上进行了传热和传质。数值结果表明,磁场和辐射的结合作用强烈地控制了热泳流体动力流的流动和传质特性。从物理的角度来看,这个问题也很有趣,而且在工程科学中也很有趣。

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