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首页> 外文期刊>Journal of Fluid Mechanics >The impact of imperfect heat transfer on the convective instability of a thermal boundary layer in a porous media
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The impact of imperfect heat transfer on the convective instability of a thermal boundary layer in a porous media

机译:传热不完善对多孔介质中热边界层对流不稳定性的影响

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We consider convective instability in a deep porous medium cooled from above with a linearised thermal exchange at the upper surface, thus determining the impact of using a Robin boundary condition, in contrast to previous studies using a Dirichlet boundary condition. With the linearised surface exchange, the thermal flux out of the porous layer depends linearly on the temperature difference between the effective temperature of a heat sink at the upper boundary and the temperature at the surface of the porous layer. The rate of this exchange is characterised by a dimensionless Biot number, Bi, determined by the effective thermal conductivity of exchange with the heat sink relative to the physical thermal conductivity of the porous layer. For a given temperature difference between the heat sink at the upper boundary and deep in the porous medium, we find that imperfectly cooled layers with finite Biot numbers are more stable to convective instabilities than perfectly cooled layers which have large, effectively infinite Biot numbers. Two regimes of behaviour were determined with contrasting stability behaviour and characteristic scales. When the Biot number is large the near-perfect heat transfer produces small corrections of order 1/Bi to the perfectly conducting behaviour found when the Biot number is infinite. In the insulating limit as the Biot number approaches zero, a different behaviour was found with significantly larger scales for the critical wavelength and depth of convection both scaling proportional to 1/root Bi.
机译:与先前使用Dirichlet边界条件的研究相比,我们考虑了从上方冷却并在上表面进行线性热交换的深层多孔介质的对流不稳定性,从而确定了使用Robin边界条件的影响。通过线性化的表面交换,从多孔层流出的热通量线性地取决于在上边界处的散热器的有效温度与在多孔层的表面处的温度之间的温度差。该交换速率的特征在于无因次的毕奥特数Bi,其由与散热器交换的有效热导率相对于多孔层的物理热导率确定。对于上边界处的热沉与多孔介质深处的给定温度差,我们发现具有有限Biot数的不完全冷却层比具有大的有效无限Biot数的完美冷却层对流不稳定性更稳定。确定了两种行为方式,对比了稳定行为和特征量表。当毕奥特数很大时,接近完美的传热会对毕奥特数无限时发现的完美传导行为产生1 / Bi量级的较小校正。当比奥数接近零时,在绝缘极限中,发现了一种不同的行为,其临界波长和对流深度的比例都明显更大,且比例均与1 /根Bi成正比。

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