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Non-Gray Gas Radiation Effect on Mixed Convection in Lid Driven Square Cavity

机译:盖驱动方腔混合对流的非灰色气体辐射效应

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A numerical study is performed to investigate the effect of non-gray radiation on mixed convection in a vertical two sided lid driven square cavity filled with air-H_2O-CO_2 gas mixture. The vertical moving walls of the enclosure are maintained at two different but uniform temperatures. The horizontal walls are thermally insulated and considered as adiabatic walls. The governing differential equations are solved by a finite-volume method and the SIMPLE algorithm was adopted to solve the pressure-velocity coupling. The radiative transfer equation (RTE) is solved by the discrete ordinates method (DOM). The spectral line weighted sum of gray gases model (SLW) is used to account for non-gray radiation properties. Simulations are performed in configurations where thermal and shear forces induce cooperating buoyancy forces. Streamlines, isotherms, and Nusselt number are analyzed for three different values of Richardson's number (from 0.1 to 10) and by considering three different medium (transparent medium, gray medium using the Planck mean absorption coefficient, and non-gray medium assumption).
机译:进行数值研究以研究非灰色辐射对填充空气-H_2O-CO_2气体混合物的垂直双面盖驱动方形腔混合对流的影响。外壳的垂直移动壁保持在两个不同但均匀的温度下。水平壁是热绝缘的并且被认为是绝热壁。通过有限体积法解决了控制微分方程,采用了简单的算法来解决压力速度耦合。通过离散坐标方法(DOM)解决了辐射传输方程(RTE)。灰气模型(SLW)的光谱线加权和用于解释非灰色辐射特性。在热和剪切力诱导配合浮力力的配置中进行仿真。分析石油公司,等温线和营养数量,针对Richardson的数量(0.1至10)的三种不同值,并考虑三种不同的介质(使用普朗克均值吸收系数和非灰色介质假设)。

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