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Diffusion thermo effects on unsteady MHD free convection flow of a Kuvshinski fluid past a vertical porous plate in slip flow regime

机译:扩散热效应于非稳态MHD自由对流流的Kuvshinski流体通过垂直多孔板在滑动流状态下

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The main purpose of this work is to investigate the diffusion-thermo effects on unsteady combined convection magneto-hydromagnetic boundary layer flow of viscous electrically conducting and chemically reacting fluid over a vertical permeable radiated plate embedded in a highly porous medium. The slip flow regime is applied at the porous interface a uniform magnetic field is applied normal to the fluid flow direction which absorbs the fluid with suction that varies with time. The dimensionless governing equations are solved analytically using two terms harmonic and non-harmonic functions. The expressions for the fields of velocity, temperature and concentration are obtained. For engineering interest we also calculated the physical quantities the skin friction coefficient, Nusselt and Sherwood number are derived. The effects of various physical parameters on the flow quantities are studied through graphs and tables. For the validity, we have checked our results with previously published work and found good agreement with already existing studies.
机译:该工作的主要目的是研究对不稳定组合对流磁磁磁性边界层流动在嵌入高度多孔介质中的垂直透过透露辐射板上的粘性电导和化学反应流体的不稳定组合的磁磁磁性边界层流动的扩散热效应。在多孔界面处施加滑动流动状态均匀磁场垂直于流体流动方向施加,该流体流动方向吸收与随时间变化的吸入的流体。使用两个术语谐波和非谐波函数分析无量纲控制方程。获得速度,温度和浓度领域的表达。对于工程兴趣,我们还计算出皮肤摩擦系数,NURSELT和SHERWOOD数量的物理量。通过图形和表来研究各种物理参数对流量的影响。为了有效性,我们已通过以前发布的工作检查了我们的结果,并与已经存在的研究发现了良好的协议。

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