湍流
辐射传输
烟灰
概率密度函数
欧拉路径
物理
机械
对流扩散方程
喷射(流体)
层流
统计物理学
热力学
计算物理学
燃烧
化学
数学
光学
统计
有机化学
拉格朗日
数学物理
摘要
The time-averaged Radiative Transfer Equation (RTE) introduces two unclosed terms, known as 'absorption Turbulence Radiation Interaction (TRI)' and 'emission TRI'. Emission TRI is related to the non-linear coupling between fluctuations of the absorption coefficient and fluctuations of the Planck function and can be described without introduction any approximation by using a transported PDF method. In this study, a hybrid flamelet/ Stochastic Eulerian Field Model is used to solve the transport equation of the one-point one-time PDF. In this formulation, the steady laminar flamelet model (SLF) is coupled to a joint Probability Density Function (PDF) of mixture fraction, enthalpy defect, scalar dissipation rate, and soot quantities and the PDF transport equation is solved by using a Stochastic Eulerian Field (SEF) method. Soot production is modeled by a semi-empirical model and the spectral dependence of the radiatively participating species, namely combustion products and soot, are computed by using a Narrow Band Correlated-k (NBCK) model. The model is applied to simulate an ethylene/methane turbulent jet flame burning in an oxygen-enriched environment. Model results are compared with the experiments and the effects of taken into account Emission TRI on flame structure, soot production and radiative loss are discussed.
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