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Investigation of transient conduction–radiation heat transfer in a square cavity using combination of LBM and FVM

机译:结合LBM和FVM研究方腔内瞬态传导-辐射换热

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In this paper, the effect of surface radiation in a square cavity containing an absorbing, emitting and scattering medium with four heated boundaries is investigated, numerically. Lattice Boltzmann method (LBM) is used to solve the energy equation of a transient conduction–radiation heat transfer problem and the radiative heat transfer equation is solved using finite-volume method (FVM). In this work, two different heat flux boundary conditions are considered for the east wall: a uniform and a sinusoidally varying heat flux profile. The results show that as the value of conduction–radiation decreases, the dimensionless temperature in the medium increases. Also, it is clarified that, for an arbitrary value of the conduction–radiation parameter, the temperature decreases with decreasing scattering albedo. It is observed that when the boundaries reflect more, a higher temperature is achieved in the medium and on boundaries.
机译:在本文中,数值研究了方形腔中表面辐射的影响,该方形腔包含具有四个受热边界的吸收,发射和散射介质。格子Boltzmann方法(LBM)用于求解瞬态传导-辐射热传递问题的能量方程,而辐射热传递方程则使用有限体积方法(FVM)求解。在这项工作中,考虑了东墙的两种不同的热通量边界条件:均匀的和正弦变化的热通量分布。结果表明,随着传导辐射值的减小,介质中的无量纲温度升高。另外,需要说明的是,对于传导辐射参数的任意值,温度随散射反照率的降低而降低。观察到,当边界反射更多时,在介质中和边界上获得更高的温度。

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