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NUMERICAL SIMULATION OF JET DIFFUSION FLAMES WITH RADIATIVE HEAT TRANSFER MODELING

机译:辐射传热建模的射流扩散火焰数值模拟

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摘要

Beside appropriate turbulence and combustion modeling, the problem of an accurate prediction of turbulent diffusion flames usually requires accurate radiative heat transfer predictions as well. In this paper it is shown that the inclusion of radiation modeling into the overall numerical simulation is important if accurate temperature profiles are needed. Two different jet diffusion flame configurations are simulated in this work - a diluted hydrogen jet flame (80% H_2 and 20% He by volume), and a piloted methane jet diffusion flame (flame D). The predictions are compared to experimental data. Radiation is modeled by a conservative discrete transfer radiation method (DTRM). Turbulence is modeled by a classical k-ε and by a hybrid procedure, as proposed in [9]. Combustion modeling is based on the stationary laminar flamelet model (SLFM), where the combustion/turbulence interaction is accomplished via the presumed β probability density function (β-PDF).
机译:除了适当的湍流和燃烧模型外,湍流扩散火焰的准确预测问题通常也需要准确的辐射传热预测。本文表明,如果需要精确的温度曲线,则将辐射模型包括在整体数值模拟中非常重要。在这项工作中,模拟了两种不同的射流扩散火焰构型-稀释的氢射流火焰(按体积计80%H_2和20%He)和一个中试甲烷射流扩散火焰(火焰D)。将预测结果与实验数据进行比较。通过保守的离散转移辐射方法(DTRM)对辐射进行建模。如[9]中所提出的,湍流是通过经典的k-ε和混合过程来建模的。燃烧建模基于固定层流小火焰模型(SLFM),其中燃烧/湍流相互作用通过假定的β概率密度函数(β-PDF)完成。

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