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首页> 外文期刊>International communications in heat and mass transfer >Numerical investigation of the combined impact of variable gravity field and throughflow on the onset of convective motion in a porous medium layer
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Numerical investigation of the combined impact of variable gravity field and throughflow on the onset of convective motion in a porous medium layer

机译:可变重力场和通流对多孔介质层中对流运动开始的联合影响的数值研究

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摘要

The present article is to examine the joint influence of variable gravity filed and throughflow on the onset of convective motion in a porous medium layer using higher order Galerkin method. The porous layer subjected to a constant upward vertical throughflow and variable downward gravity field which differs with distance across the layer. We discussed the four cases of gravity field variation: (i) G(z) = -z, (ii) G(z) = -z(2), (iii) G(z) = -z(3) and (iv) G(z) = - (e(z) - 1). Results indicate that both the throughflow and gravity variation parameters are to postpone the onset of convective motion. The system is observed to be more stable for case (iv), while more unstable for case (iii).
机译:本文旨在使用高阶Galerkin方法研究可变重力场和通流对多孔介质层中对流运动开始的联合影响。多孔层受到恒定的向上垂直通流和可变的向下重力场,该场随跨层距离的不同而不同。我们讨论了重力场变化的四种情况:(i)G(z)= -z,(ii)G(z)= -z(2),(iii)G(z)= -z(3)和( iv)G(z)=-(e(z)-1)。结果表明,通流和重力变化参数都将推迟对流运动的开始。观察到该系统对于情况(iv)更稳定,而对于情况(iii)更不稳定。

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