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首页> 外文期刊>Applied Mathematical Modelling >Group method analysis of combined heat and mass transfer by MHD non-Darcy non-Newtonian natural convection adjacent to horizontal cylinder in a saturated porous medium
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Group method analysis of combined heat and mass transfer by MHD non-Darcy non-Newtonian natural convection adjacent to horizontal cylinder in a saturated porous medium

机译:饱和多孔介质中与水平圆柱相邻的MHD非达西非牛顿自然对流传热传质的组合方法分析

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摘要

The group theoretic method is applied for solving problem of combined magneto-hydrodynamic heat and mass transfer of non-Darcy natural convection about an impermeable horizontal cylinder in a non-Newtonian power law fluid embedded in porous medium under coupled thermal and mass diffusion, inertia resistance, magnetic field, thermal radiation effects. The application of one-parameter groups reduces the number of independent variables by one and consequently, the system of governing partial differential equations with the boundary conditions reduces to a system of ordinary differential equations with appropriate boundary conditions. The ordinary differential equations are solved numerically for the velocity using shooting method. The effects of magnetic parameter M, Ergun number Er, power law (viscosity) index n, buoyancy ratio N, radiation parameter R_d, Prandtl number Pr and Lewis number Le on the velocity, temperature fields within the boundary layer, heat and mass transfer are presented graphically and discussed.
机译:运用群理论方法解决了热-质量耦合,惯性阻力耦合的非牛顿幂律流体中非渗透性水平圆柱体在渗透介质中的非达西自然对流的磁流体动力热与传质相结合的问题。 ,磁场,热辐射效应。一参数组的应用将自变量的数量减少了一个,因此,将具有边界条件的偏微分方程的控制系统简化为具有适当边界条件的常微分方程的系统。使用射击方法对常微分方程进行数值求解。磁参数M,Ergun数Er,幂律(粘度)指数n,浮力比N,辐射参数R_d,Prandtl数Pr和Lewis数Le对速度,边界层内的温度场,传热和传质的影响为以图形方式展示和讨论。

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