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Modeling turbulence-radiation interaction in confined diffusion flames

机译:在密闭扩散火焰中模拟湍流-辐射相互作用

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Modern accuracy requirements for simulations of confined turbulent combustion systems motivated numerous investigations of the complex problem of radiative heat transfer in fluctuating flow fields. Stochastic methods have been used to analyse the major features of this physical phenomenon and have illustratedits importance in many engineering applications. The present paper will discuss the feasibility of an approach based on the thin eddy assumption for middle size combustion chambers. Emphasis is given to the problem of simultaneous fluctuations of heat release ratio and mixture fraction which is modeled with a two dimensional probability density function in order to describe the specific behavior of diffusion flames in confined environments. This model is used to estimate averages toward the numerical procedure; in particular to compute the average radiative emission with correlated fluctuations of radiative properties, water vapor and carbon dioxide concentrations, and blackbody intensity.
机译:现代对密闭湍流燃烧系统进行模拟的精度要求促使人们对波动的流场中的辐射传热这一复杂问题进行了大量研究。随机方法已用于分析这种物理现象的主要特征,并说明了其在许多工程应用中的重要性。本文将讨论基于薄涡流假设的中型燃烧室方法的可行性。重点介绍了放热率和混合分数同时波动的问题,用二维概率密度函数对其进行建模,以描述受限环境中扩散火焰的特定行为。该模型用于估计数值过程的平均值。特别是要计算平均辐射发射以及辐射特性,水蒸气和二氧化碳浓度以及黑体强度的相关波动。

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