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Effect of volumetric radiation on natural convection in a cavity with a horizontal fin using the lattice Boltzmann method

机译:用晶格Boltzmann方法对水平翅片的腔腔自然对流的影响

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The lattice Boltzmann method (LBM) is presented for the effects of volumetric radiation on laminar natural convection in a square cavity with a horizontal fin on the hot wall containing an absorbing, emitting and scattering medium. Accordingly, the flow, energy and radiative equations are solved by separate distribution functions in the LBM. A parametric study is performed: the effects of Rayleigh number and radiative parameters, such as extinction coefficient and scattering albedo on the flow and temperature fields are investigated. It is found that the isotherms become dense near the cold wall, due to highly participating properties and Rayleigh number. Also, the Nusselt number ratio (NNR) on the clod wall is examined for values of fin length and height. The maximum NNR is found at the longest fin length and near top wall for a given Rayleigh number.
机译:提出了晶格Boltzmann方法(LBM),用于体积辐射对具有吸收,发射和散射介质的热壁上的水平翅片中的层腔中的层腔中的层腔自然对流的影响。 因此,通过LBM中的单独分布函数来解决流量,能量和辐射方程。 进行了参数研究:研究了瑞利数和辐射参数的影响,例如流动和温度场的消光系数和散射反玻璃。 结果发现,由于高度参与的性质和瑞利数,等温物在冷壁附近致密。 而且,检查了Clod壁的氮数值(NNR),用于翅片长度和高度的值。 对于给定的瑞利数,最大NNR位于最长的翅片长度和靠近顶壁附近。

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