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Conjugate Heat Transfer By Natural Convection, Conduction And Radiation In Open Cavities

机译:在敞开腔中通过自然对流,传导和辐射共轭传热

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In this paper, we investigate conjugate heat transfer by natural convection, conduction and radiation in open cavities in which a uniform heat flux is applied to the inside surface of the solid wall facing the opening. Conservation equations are solved by finite difference-control volume numerical method. The relevant governing parameters are: the Rayleigh numbers from 10~9 to 10~(12), the Prandtl number, Pr = 0.7, constant for air, the cavity aspect ratio, A = L/H from 0.4 to 1, the wall thickness I/H = 0.02-0.08, the conductivity ratio k_r from 1 to 50 and the surface emissivity, e from 0 to 1. We found that the surface radiation affected the flow and temperature fields considerably. The influence of the surface radiation is to decrease the heat fluxes by natural convection and conduction while the heat flux by radiation increases with increasing surface emissivity. On the other hand, the convective and radiative Nus-selt numbers are increasing functions of the surface emissivity for a given wall conductance. The combined Nusselt number and the volume flow rate are both increasing functions of the surface emissivity, particularly at high Rayleigh numbers. The convective and radiative Nusselt numbers are a decreasing function of the wall conductance and an increasing function of the aspect ratio. We found similar trends for the volume flow rate through the cavity.
机译:在本文中,我们研究了通过自然对流,传导和辐射在开孔中进行的共轭传热,在开孔中,均匀的热通量施加于面向孔的固体壁的内表面。通过有限差分控制体积数值方法求解守恒方程。相关的控制参数为:瑞利数从10〜9到10〜(12),普朗特数Pr = 0.7,空气常数,腔体长宽比,A = L / H从0.4到1,壁厚I / H = 0.02-0.08,电导率比k_r从1到50,表面发射率e从0到1。我们发现表面辐射对流场和温度场的影响很大。表面辐射的影响是通过自然对流和传导减少热通量,而辐射的热通量则随着表面发射率的增加而增加。另一方面,对于给定的壁电导,对流和辐射Nus-selt数是表面发射率的增加函数。组合的努塞尔数和体积流率都是表面发射率的增加函数,尤其是在高瑞利数下。对流和辐射Nusselt数是壁电导的递减函数,是纵横比的递增函数。我们发现通过腔体的体积流量具有相似的趋势。

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