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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Turbulent natural convection heat transfer with thermal radiation in a rectangular enclosure partially filled with porous medium
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Turbulent natural convection heat transfer with thermal radiation in a rectangular enclosure partially filled with porous medium

机译:在部分充满多孔介质的矩形外壳中,通过自然辐射对流进行自然湍流换热

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摘要

In this paper, the effects of surface radiation on turbulent natural convection and heat transfer in an enclosure partially filled with a porous medium have been studied numerically. The governing equations for the momentum and thermal energy in both free fluid and porous medium were solved by the finite element method. Effects of thermal radiation on natural convection and heat transfer in both free fluid and porous media were analyzed. It was found that with the increase of Rayleigh number, the convective Nusselt number at the interface between the free fluid and the porous medium increases, and the mean temperature at the interface decreases. Surface thermal radiation can significantly change the temperature fields of free flow. With the increase of surface emissivity, the mean convective Nusselt number at the interface decreases slightly, and the radiative and total Nusselt numbers at the interface increase. The thickness of the porous medium also has a significant effect on heat transfer in the region of free flow, and the convective Nusselt number at the interface decreases with the increase of the ratio of thickness between the porous media and free flow until the ratio is 0.25. Comparing the enclosure with the adiabatic upper wall, the mean temperature at the interface is higher, and the convective Nusselt number at the interface is lower when the upper wall is nonadiabatic.
机译:在本文中,已经数值研究了表面辐射对部分填充有多孔介质的机壳内湍流自然对流和传热的影响。通过有限元方法求解了自由流体和多孔介质中动量和热能的控制方程。分析了热辐射对自由流体和多孔介质中自然对流和传热的影响。发现随着瑞利数的增加,自由流体与多孔介质之间的界面处的对流努塞尔数增加,界面处的平均温度降低。表面热辐射会显着改变自由流动的温度场。随着表面发射率的增加,界面处的平均对流努塞尔数略有减少,界面处的辐射和总努塞尔数均增加。多孔介质的厚度也对自由流动区域内的传热有重要影响,并且界面处的对流努塞尔数随着多孔介质和自由流动之间的厚度比的增加而减小,直到该比率为0.25。 。与绝热上壁相比,当上壁非绝热时,界面处的平均温度较高,界面处的对流Nusselt数较低。

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