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首页> 外文期刊>International Journal of Heat and Mass Transfer >Conjugate turbulent natural convection with surface radiation in air filled rectangular enclosures
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Conjugate turbulent natural convection with surface radiation in air filled rectangular enclosures

机译:在充满空气的矩形外壳中通过表面辐射使湍流自然对流共轭

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摘要

Conjugate turbulent natural convection and surface radiation in rectangular enclosures heated from below and cooled from other walls, typically encountered in Liquid Metal Fast Breeder Reactor (LMFBR) subsystems, have been investigated by a finite volume method for various aspect ratios. The formulation comprises the standard two equation k-ε turbulence model with physical boundary conditions (no wall functions), along with the Boussinesq approximation, for the flow and heat transfer. As far as radiation is concerned, the radiosity - irradiation formulation for a transparent fluid of Prandtl number 0.7 has been employed. The conjugate coupling on the walls has been handled by using a fin type formulation. The Rayleigh number based on the width of the enclosure is varied from 10~8 to 10~(12) and the aspect ratio is varied from 0.5 to 2.0. Detailed results including stream lines, temperature profiles, and convective, radiative and overall Nusselt numbers are presented. A correlation for the mean convection Nusselt number in terms of Rayleigh number and aspect ratio is proposed for design purposes. The influence of the wall emissivity and the external heat transfer coefficient on the heat transfer from the enclosure has also been investigated.
机译:已经通过有限体积方法针对各种纵横比研究了从下方加热并从其他壁冷却的矩形外壳中的共轭湍流自然对流和表面辐射,这通常在液态金属快繁反应堆(LMFBR)子系统中遇到。该公式包括具有流动边界和传热条件的具有物理边界条件(无壁函数)的标准两个方程式k-ε湍流模型以及Boussinesq近似。就辐射而言,已经采用了Prandtl数为0.7的透明流体的辐射度-辐射配方。壁上的共轭偶联已通过使用翅片型配方处理。基于外壳宽度的瑞利数在10〜8到10〜(12)之间变化,纵横比在0.5到2.0之间变化。给出了详细的结果,包括流线,温度曲线以及对流,辐射和总体Nusselt数。为了设计目的,提出了关于平均对流努塞尔数的瑞利数和纵横比的相关性。还研究了壁发射率和外部传热系数对从外壳传热的影响。

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