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Numerical investigation of coupled natural convection and radiation in a differentially heated cubic cavity filled with humid air. Effects of the cavity size

机译:厚湿空气耦合自然对流和辐射耦合自然对流的数值研究。 腔尺寸的影响

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摘要

A numerical study of natural convection with surface and air/H2O mixture radiation in a differentially heated cubic square cavity is presented. The coupled flow and heat transfers in the cavity are predicted by coupling a finite volume method with a spectral line weighted sum of gray gase model to describe gas radiative properties. The radiative transfer equation is solved by means of the discrete ordinate method. Simulations are performed at Ra = 10(6), considering different combinations of passive wall and/or gas radiation properties and different cavity length. It was found that in presence of a participative medium representative of building, cavity length has a strong influence on temperature and velocity fields which affect the global circulation and heat transfers in the cavity. For each steady-state solution, the convective and radiative contributions to the global heat transfer are discussed. More specifically, boundary layer thickness, thermal stratification parameter, and three-dimensional effects are compared to pure convective case results. The results suggest that radiative effects, often considered as negligible in view of the relatively low optical thickness, may not be neglected when trying to predict regime transitions.
机译:介绍了差动立方方腔中表面和空气/ H2O混合辐射的自然对流的数值研究。通过用灰色Gase模型的光谱线加权和耦合的有限体积方法来预测腔中的耦合流程和热量传递,以描述气体辐射性能。通过离散纵坐标方法解决了辐射传递方程。考虑到无源壁和/或气体辐射特性和不同腔长的不同组合,在RA = 10(6)中进行模拟。结果发现,在代表建筑物的参与介质的情况下,腔长对温度和速度场具有强烈影响,这些速度和速度场影响腔内的全局循环和热量转移。对于每个稳态解决方案,讨论了对全球传热的对流和辐射贡献。更具体地说,将边界层厚度,热分层参数和三维效应与纯对流情况进行比较。结果表明,考虑到相对较低的光学厚度,通常被认为是可忽略不计的辐射效应,在尝试预测政权转换时可能不会被忽略。

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