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Ignition and structure of a laminar diffusion flame in the field of a vortex

机译:涡流场中层流扩散火焰的点火和结构

摘要

The distortion of flames in flows with vortical motion is examined via asymptotic analysis and numerical simulation. The model consists of a constant density, one step, irreversible Arrhenius reaction between initially unmixed species occupying adjacent half-planes which are then allowed to mix and react in the presence of a vortex. The evolution in time of the temperature and mass fraction fields is followed. Emphasis is placed on the ignition time and location as a function of vortex Reynolds number and initial temperature differences of the reacting species. The study brings out the influence of the vortex on the chemical reaction. In all phases, good agreement is observed between asymptotic analysis and the full numerical solution of the model equations.
机译:通过渐近分析和数值模拟研究了涡流中火焰的变形。该模型由恒定密度,第一步,占据相邻半平面的最初未混合的物种之间不可逆的阿伦尼乌斯反应组成,然后使它们混合并在涡旋存在下反应。跟随温度和质量分数场的时间演变。重点放在点火时间和位置,作为涡旋雷诺数和反应物种初始温度差的函数。该研究揭示了涡旋对化学反应的影响。在所有阶段中,都可以看到渐近分析与模型方程的完整数值解之间的一致性。

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