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Modelling soot production and thermal radiation for turbulent diffusion flames

机译:为湍流扩散火焰造型烟灰生产和热辐射

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This paper presents a systematic investigation on the strategies required for modelling soot when performing CFD simulations of turbulent flames. The first test case consists in a 3D enclosure containing a mixture of N2, CO2, H2O and soot (Coelho, 2003). Results obtained with the gray implementation of the Discrete Ordinate Method in ANSYS Fluent are compared against literature data, assessing different formulations for the absorption coefficient of soot. These considerations are exploited through reactive RANS simulations accounting for radiative heat transfer, with the purpose to test different models for soot formation process on a turbulent non-premixed kerosene-air flame (Young et al., 1994).
机译:本文提出了对在进行湍流火焰的CFD模拟时建模烟灰所需的策略进行了系统的调查。第一个测试用例包括3D外壳,其包含N 2,CO 2,H 2 O和烟灰(Coelho,2003)的混合物。通过在吞气流畅的离散纵坐标方法的灰色实施获得的结果与文学数据进行比较,评估了烟灰吸收系数的不同配方。这些考虑因素通过反应性RANS模拟核算用于辐射传热,目的是在湍流未预混的煤油火焰上测试不同模型的烟灰形成过程(Young等,1994)。

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