首页> 外文期刊>International Journal of Heat and Mass Transfer >Natural convection in a porous rectangular enclosure with sinusoidal temperature distributions on both side walls using a thermal non-equilibrium model
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Natural convection in a porous rectangular enclosure with sinusoidal temperature distributions on both side walls using a thermal non-equilibrium model

机译:使用热非平衡模型在多孔矩形外壳中的自然对流,在两侧侧壁上具有正弦温度分布

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摘要

This study reports a numerical investigation of the natural convective flow and heat transfer in a rectangular cavity filled with a heat-generating porous medium by adopting the local thermal non-equilibrium model. The top and bottom walls of the enclosure are adiabatic and the left and right walls are partially heated and partially cooled by sinusoidal temperature profile. The results show that periodic variations with positive and negative values appear in the isotherms for fluid phase and solid phase, and the periodicity increases with the increase of N. The phase deviation has significant influence on fluid flow and heat transfer in the porous cavity. When N is large enough (N = 32), patterns of streamlines, isotherms for fluid phase and solid phase display like that of uniform thermal boundary condition case, and the total heat transfer rate through the whole cavity is close to that resulted by uniform thermal boundary condition. The heat transfer of porous cavity can be enhanced by sinusoidal thermal boundary condition and the phase deviation has tiny effect on the heat transfer of cavity when N is large enough (N = 32). The increase of inter-phase heat transfer coefficient leads to faster reduction of Q with the increase of periodicity parameter.
机译:这项研究报告了采用局部热非平衡模型对充满生热多孔介质的矩形腔体内自然对流流动和传热的数值研究。外壳的顶壁和底壁是绝热的,左壁和右壁通过正弦温度曲线进行部分加热和部分冷却。结果表明,液相和固相的等温线出现正负周期变化,并且随着N的增加,周期增加。相变对多孔腔内的流体流动和传热有重要影响。当N足够大(N = 32)时,流线型,液相和固相等温线的显示方式类似于均匀热边界条件的情况,并且通过整个腔体的总传热速率接近均匀传热导致的传热速率边界条件。正弦热边界条件可增强多孔腔的传热,当N足够大时(N = 32),相变对腔的传热影响很小。随着周期性参数的增加,相间传热系数的增加导致Q的更快减小。

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