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首页> 外文期刊>Combustion theory and modelling >Effects of turbulence-chemistry interactions on auto-ignition and flame structure for n-dodecane spray combustion
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Effects of turbulence-chemistry interactions on auto-ignition and flame structure for n-dodecane spray combustion

机译:湍流 - 化学相互作用对N-十二烷喷雾燃烧的自动点火和火焰结构的影响

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摘要

The Engine Combustion Network (ECN) spray A under diesel engine conditions is investigated with a non-adiabatic 5D Flamelet Generated Manifolds (FGM) model with the consideration of detailed chemical kinetic mechanisms. The enthalpy deficit due to droplet vapourisation is considered by employing an additional controlling parameter in the FGM library. In this FGM model, beta-PDF is used for the PDF integration over the control variable space. Validation results in non-reacting conditions indicate relatively good agreement between the predicted and experimental data in terms of liquid and vapour penetrations and mixture fraction spatial distribution. In reacting conditions, the effects of variance of mixture fraction and progress variable were examined. The ignition delay time and the quasi-steady flame structure are both affected by the variances. The variance of mixture fraction delays the ignition process and the variance of progress variable accelerates it. For mixture fraction, the ignition process is quicker at any stage in the case of neglecting variance. While things are more complex for progress variable, the ignition process is advanced in the case of neglecting variance at early times, but surpassed by the case of beta-PDF later and until auto-ignition. When variance of mixture fraction is considered, the OH mass fraction shows a wide spatial distribution. While if not, a very thin flame is observed with a higher peak in OH, and a very large lift-off length. The variance of progress variable has little impact on the global flame structure, but makes the flame lift-off length much shorter. This study confirms the general observation, that the variance of mixture fraction is of higher importance in high temperature non-premixed combustion, however, we found that the variance of progress variable is far from negligible.
机译:通过考虑详细的化学动力学机制,研究了发动机燃烧网络(ECN)在柴油发动机条件下喷射柴油发动机条件。通过在FGM库中采用额外的控制参数,考虑导致液滴Vapouration引起的焓缺陷。在该FGM模型中,Beta-PDF用于对控制变量空间的PDF集成。验证导致非反应条件表明在液体和蒸汽渗透和混合级分空间分布方面的预测和实验数据之间的相对良好的一致性。在反应条件下,检查了混合级分和进展变量的变异的影响。点火延迟时间和准稳定的火焰结构都受到差异的影响。混合级分的方差延迟了点火过程,进度变量的方差加速了。对于混合级分,在忽略方差的情况下,点火过程在任何阶段更快。虽然进度变量更复杂,但在忽略早期差异的情况下,点火过程是先进的,但在稍后的BETA-PDF的情况下超出,直到自动点火。当考虑混合级分的变异时,OH质量分数显示出宽的空间分布。虽然如果不是,但是在OH中具有更高的峰值和非常大的剥离长度,观察到非常薄的火焰。进度变量的方差对全局火焰结构影响不大,但使火焰升降长度较短。本研究证实了一般的观察,即混合物馏分的变化在高温非预混燃烧中具有更高的重要性,但是,我们发现进度变量的变化远非可忽略不计。

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