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首页> 外文期刊>International Journal of Heat and Mass Transfer >Thermal instability in a porous medium layer saturated by a nanofluid: A revised model
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Thermal instability in a porous medium layer saturated by a nanofluid: A revised model

机译:纳米流体饱和的多孔介质层中的热不稳定性:修正模型

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We develop an extension of our previous thermal instability analysis or a nanofluid-saturated porous layer. The extension is based on a new boundary condition for the nanoparticle fraction, which is physically more realistic. In the previous model we imposed both temperature and nanoparticle volume fractions at the boundaries of the layer. It is now assumed that the value of the temperature can be imposed on the boundaries, but the nanoparticle fraction adjusts so that the nanoparticle flux is zero on the boundaries. The new boundary condition on the nanoparticle volume fraction is made possible by accounting for the contributions of the effect of thermophoresis to the nanoparticle flux. It is shown that, with the new boundary conditions, oscillatory convection cannot occur. The effect of the nanoparticles on non-oscillatory convection is destabilizing.
机译:我们对先前的热不稳定性分析或纳米流体饱和的多孔层进行了扩展。该扩展基于纳米颗粒部分的新边界条件,这在物理上更现实。在先前的模型中,我们在层的边界处同时施加了温度和纳米粒子的体积分数。现在假设可以将温度的值施加在边界上,但是纳米颗粒的分数进行调节,使得纳米颗粒的通量在边界上为零。通过考虑热泳效应对纳米粒子通量的贡献,可以使纳米粒子体积分数的新边界条件成为可能。结果表明,在新的边界条件下,振荡对流不会发生。纳米颗粒对非振荡对流的影响是不稳定的。

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