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Effects of Differential Diffusion on Predicted Autoignition Delay Times Inspired by H2/N2 Jet Flames in a Vitiated Coflow Using the Linear Eddy Model

机译:使用线性涡流模型,差分扩散对通风气流中H2 / N2喷射火焰激发的自燃延迟时间的影响

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摘要

Mixing and chemistry interactions in a H_2/N_2 jet flame into a vitiated coflow are considered key factors affecting autoignition. A 1-D numerical model under laminar flow condition is first simulated to reveal the effects of fuel species, pressure, and coflow properties on the autoignition with and without the consideration of preferential diffusion among species. Proper laminar reference autoignition delays are proposed and examined for different diffusion models. Next, the reference autoignition delays defined from laminar simulations are investigated in an example turbulent flow using the Linear Eddy Model (LEM). LEM is used to model the effect of turbulent mixing on autoignition, where we specifically investigate if the effect of turbulence on autoignition can be classified in two regimes, which are dependent on a proper reference laminar autoignition delay and turbulence time scale. The trend of the effect of differential diffusion on autoignition versus turbulence Reynolds is simulated and analyzed, and several tentative conclusions are drawn.
机译:H_2 / N_2喷射火焰中的混合和化学相互作用被认为是影响到自燃的关键因素。首先模拟了层流条件下的一维数值模型,以揭示燃料种类,压力和同流特性对自燃的影响,而无需考虑物种间的优先扩散。提出并针对不同的扩散模型检查了适当的层流参考自燃延迟。接下来,在使用线性涡流模型(LEM)的示例性湍流中研究了由层流模拟定义的参考自燃延迟。 LEM用于模拟湍流混合对自燃的影响,在此我们专门研究湍流对自燃的影响是否可以分为两种情况,这取决于适当的参考层流自燃延迟和湍流时标。模拟和分析了微分扩散对自燃与湍流雷诺的影响趋势,并得出了一些初步结论。

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