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Interaction of a Gaussian acoustic wave with a turbulent non-premixed flame

机译:高斯声波与湍流非预混火焰的相互作用

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A Direct Numerical Simulation ( DNS) of a turbulent non- premixed flame interacting with a Gaussian acoustic wave is carried out in this work. This numerical simulation takes into account detailed transport phenomena including the Soret effect as well as complete chemical kinetics on a very fine mesh. Turbulent non- premixed flame calculations are carried out both with and without an acoustic wave and results are recorded at the same time. By a simple difference it is then possible to obtain the influence of the acoustic wave/ turbulent flame interaction. Using an extension of the non- linear Rayleigh criterion to a system with many species and elementary reactions, the obtained results can be further analysed. The initially planar acoustic wave develops strong perturbations along its transverse direction because of the interaction process, even at very early times. The amplitude of the pressure perturbation presents locally high positive as well as negative values, demonstrating the importance of focussing/ defocussing effects and local amplification ( resp. damping) phenomena. In the same way, the heat release rate is locally modified ( either increased or decreased) during the interaction process. Finally, the presented Rayleigh criterion is used to identify regions where local amplification ( respectively damping) takes place. Both amplification and damping zones coexist directly close to each other inside the reaction zone. The observed, resulting global effect is thus based on an average over highly varying local conditions within the flame front, leading to a smoothing effect. The complexity of the coupling procedure leading to this global wave amplification or damping is demonstrated by the present analysis.
机译:在这项工作中进行了湍流非预混火焰与高斯声波相互作用的直接数值模拟(DNS)。该数值模拟考虑了详细的运输现象,包括索雷特效应以及在非常细的网格上的完整化学动力学。在有声波和无声波的情况下均进行湍流非预混火焰的计算,并同时记录结果。通过一个简单的差异,便有可能获得声波/湍流火焰相互作用的影响。通过将非线性瑞利准则扩展到具有许多物种和基本反应的系统,可以进一步分析获得的结果。甚至在很早的时候,由于相互作用过程,最初的平面声波沿其横向也会产生强烈的扰动。压力扰动的幅度呈现局部较高的正值和负值,这说明了聚焦/散焦效果和局部放大(或阻尼)现象的重要性。以相同的方式,在相互作用过程中放热率被局部改变(增加或减少)。最后,提出的瑞利准则用于识别发生局部放大(分别为阻尼)的区域。放大区和阻尼区在反应区内直接共存。因此,观察到的结果整体效果是基于火焰前沿内高度变化的局部条件下的平均值,从而导致平滑效果。本分析证明了导致整体波放大或衰减的耦合过程的复杂性。

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