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首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Thermal-diffusion and diffusion-thermo effects on MHD natural convective flow through porous medium in a rotating system with ramped temperature
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Thermal-diffusion and diffusion-thermo effects on MHD natural convective flow through porous medium in a rotating system with ramped temperature

机译:热扩散和扩散-热效应对温度升高的旋转系统中MHD通过多孔介质的自然对流的影响

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Purpose - The purpose of this paper is to analyze the thermal-diffusion and diffusion-thermo effects on magnetohydrodynamics (MHD) natural convective flow through porous medium in a rotating system with ramped temperature. Design/methodology/approach - Using the non-dimensional variables, the flow governing equations along with corresponding initial and boundary conditions have been transformed into non-dimensional form. These non-dimensional partial differential equations are solved by using finite element method. This method is powerful and stable. It provides excellent convergence and flexibility in providing solutions. Findings - The effects of Soret number, Dufour number, rotation parameter, magnetic parameter, Hall current parameter, permeability parameter, thermal Grashof number, solutal Grashof number, Prandtl number, thermal radiation parameter, heat absorption parameter, Schmidt number, chemical reaction parameter and time on the fluid velocities, temperature and concentration are represented graphically in a significant way and the influence of pertinent flow governing parameters on the skin frictions and Nusselt number are presented in tabular form. On the other hand, a comparison for validation of the numerical code with previously published work is performed, and an excellent agreement is observed for the limited case existing literature. Practical implications - A very useful source of information for researchers on the subject of MHD flow through porous mediumin a rotating system with ramped temperature. Originality/value - The problem is moderately original, as it contains many effects like thermal-diffusion (Soret) and diffusion-thermo (Dufour) effects and chemical reaction.
机译:目的-本文的目的是分析温度升高的旋转系统中,热扩散和热扩散对通过多孔介质的磁流体动力学(MHD)自然对流流动的影响。设计/方法/方法-使用无量纲变量,将流控制方程式以及相应的初始条件和边界条件转换为无量纲形式。这些无量纲偏微分方程采用有限元法求解。此方法功能强大且稳定。在提供解决方案时,它具有出色的融合性和灵活性。结果-Soret数,Dufour数,旋转参数,磁参数,霍尔电流参数,磁导率参数,热Grashof数,Solual Grashof数,Prandtl数,热辐射参数,吸热参数,Schmidt数,化学反应参数和时间对流体速度,温度和浓度的影响用图形表示,并且以表格形式显示了相关的流量控制参数对皮肤摩擦和Nusselt数的影响。另一方面,对数字代码的验证与先前发表的工作进行了比较,对于有限情况下的现有文献,观察到了极好的一致性。实际意义-对于研究人员而言,非常有用的信息来源,涉及MHD在温度升高的旋转系统中通过多孔介质流动的问题。原创性/价值-该问题是中等程度的原创性问题,因为它包含许多效应,例如热扩散(Soret)和扩散热(Dufour)效应以及化学反应。

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