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Numerical study of coupled molecular gas radiation and natural convection in a differentially heated cubical cavity

机译:差热立方腔内分子气体辐射与自然对流耦合的数值研究

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The coupling between natural convection and gas and wall radiation is studied numerically in a differentially heated cubical cavity filled with an air/CO_2/H_2O mixture. In order to solve coupled flow, heat transfer, and radiation equations, we develop a 3D radiative transfer model based on the deterministic ray tracing method, coupled with a pseudo-spectral Chebyshev method for natural convection under Boussinesq approximation. An absorption distribution function (ADF) model is used to describe gas radiative properties. Coupled simulations are performed at Ra = 10~5, 10~6, and 3 × 10~7, considering wall and/or gas radiation. Steady solutions were obtained except at the highest Rayleigh number in the case of radiating walls. Results show a strong influence of radiative transfer on temperature and velocity fields. The global homogenization of the temperature field induced by radiation leads to a decrease of the thermal stratification parameter. Two different mechanisms leading to this behavior, involving either wall/wall or gas radiative exchanges, are identified. In addition, we observe a thickening of the vertical boundary layers and an increase of the global circulation in the cavity. The influence of the Rayleigh number and 3D effects are also discussed.
机译:在充满空气/ CO_2 / H_2O混合物的差热立方腔中,对自然对流与气体和壁辐射之间的耦合进行了数值研究。为了解决耦合的流动,传热和辐射方程,我们基于确定性射线追踪方法,结合伪光谱Chebyshev方法,在Boussinesq近似下自然对流,开发了3D辐射传递模型。吸收分布函数(ADF)模型用于描述气体的辐射特性。考虑墙壁和/或气体的辐射,在Ra = 10〜5、10〜6和3×10〜7的条件下进行耦合模拟。在辐射壁的情况下,除了最高瑞利数之外,还获得了稳定的溶液。结果表明辐射传递对温度和速度场有很大的影响。辐射引起的温度场的整体均匀化导致热分层参数的降低。确定了导致这种行为的两种不同机制,涉及壁/壁或气体辐射交换。此外,我们观察到垂直边界层的增厚和腔体内整体环流的增加。还讨论了瑞利数和3D效果的影响。

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