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首页> 外文期刊>World journal of modelling and simulation >Hydromagnetic viscous flow in a rotating annular high-porosity medium with nonliner forchheimer drag effects: numerical study
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Hydromagnetic viscous flow in a rotating annular high-porosity medium with nonliner forchheimer drag effects: numerical study

机译:具有非线性福希海默阻力效应的环形高孔隙率旋转介质中的​​磁流体粘性流:数值研究

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摘要

A mathematical model is presented for the steady, axisymmetric, magnetohydrodynamic (MHD) flow of a viscous, Newtonian, incompressible, electrically-conducting liquid in a highly porous regime intercalated between two concentric rotating cylinders in the presence of a radial magnetic field. The porous medium is modeled using a Darcy-Forchheimer drag force approach to simulate the impedance effects of the porous medium fibers at both low velocities and also at higher velocities. The tangential and axial momentum equations are non-dimensionalized with the Nath transformations [33] and rendered into a system of nonlinear, second order, second degree partial differential conservation equations subject to appropriate non-slip boundary conditions. Solutions are obtained using both the MAPLE Library finite difference algorithm and the Network Simulation Method. The influence of Hartmann number (Ha), rotational Reynolds number (Rejt), Darcy number (Do), Forchheimer number (Fs), pressure gradient parameter (a) and cylinder relative rotation rate (N) on the dimensionless tangential (Ue) and axial (Uz) velocity components is studied in detail for the case where the cylinder walls are insulated. Excellent agreement is achieved between both methods. Applications of this study include hybrid porous media MHD power generators, magnetic materials processing and chemical engineering.
机译:提出了一个数学模型,用于在径向磁场存在的情况下,插在两个同心旋转圆柱体之间的高孔隙率状态下,粘性牛顿不可压缩的导电液体的稳态,轴对称,磁流体动力学(MHD)流动。使用Darcy-Forchheimer阻力方法对多孔介质进行建模,以模拟多孔介质纤维在低速和较高速度下的阻抗效应。切线和轴向动量方程式通过Nath变换[33]进行了无量纲化,并转化为非线性,二阶,二次度偏微分守恒方程组,该方程组要遵守适当的防滑边界条件。使用MAPLE库有限差分算法和网络仿真方法均可获得解决方案。 Hartmann数(Ha),旋转雷诺数(Rejt),Darcy数(Do),Forchheimer数(Fs),压力梯度参数(a)和圆柱相对旋转率(N)对无量纲切线(Ue)和对于气缸壁已绝缘的情况,将详细研究轴向(Uz)速度分量。两种方法之间实现了极好的一致性。这项研究的应用包括混合多孔介质MHD发电机,磁性材料加工和化学工程。

著录项

  • 来源
    《World journal of modelling and simulation》 |2012年第2期|p.83-95|共13页
  • 作者单位

    Aerospace Engineering, Department of Engineering and Mathematics, Sheaf Building, Sheffield Hallam University, Sheffield S11WB, U.K.;

    Faculty of Engineering, Cape Peninsula University of Technology, Bellville 7535-1906, South Africa;

    Thermal Engineering, ETS Ingenieros Industriales Campus Muralla del Mar, Departamento de Ingenierla Termicay Fluidos, Universidad Politecnica de Cartagena, Cartagena (Murcia) 30203, Spain;

    Thermal Engineering, ETS Ingenieros Industriales Campus Muralla del Mar, Departamento de Ingenierla Termicay Fluidos, Universidad Politecnica de Cartagena, Cartagena (Murcia) 30203, Spain;

    Magnetohydrodynamics Research Program, Applied Mathematics Section, Department of Mathematics, Narajole Raj College, West Bengal 721-211, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    magnetohydrodynamics; rotation; nonlinear porous media; chemical engineering; network simulation numerical method; MAPLE;

    机译:磁流体动力学;回转;非线性多孔介质化学工程;网络仿真数​​值方法;枫;

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