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Modelling of the effect of DC and AC electric fields on the stability of a lifted diffusion methane/air flame

机译:直流和交流电场对提升的甲烷/空气火焰扩散稳定性影响的建模

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摘要

The application of an external electric field is known to improve flame stability significantly. Until now, few studies have proposed modelling approaches for combustion in the presence of an externally applied voltage. In these numerical studies, the negative ions are overlooked, and only the displacement of positive ions and electrons under the effect of a direct electric field was examined. In the present paper, a simplified mathematical model including negative ions is proposed based on a kinetic mechanism featuring 39 ionic reactions and 5 charged species. This mechanism is first evaluated by comparison of a monodimensional premixed flame with the available experimental data. Then it is used to analyse the stabilisation mechanism of a diffusion lifted flame in the presence of direct or alternating electric fields. It was concluded that the role of negative ions is crucial, and they are not to be neglected. Moreover, the simulations have shown that the magnitude of the flame stabilisation improvement depends, mainly, on the intensity and polarity of the applied voltage. If the applied voltage is alternating, its frequency is also found to influence the extent of the flame stabilisation improvement.
机译:已知施加外部电场可显着改善火焰稳定性。迄今为止,很少有研究提出在外部施加电压下燃烧的建模方法。在这些数值研究中,忽略了负离子,仅检查了在直接电场作用下正离子和电子的位移。在本文中,基于具有39个离子反应和5个带电物质的动力学机制,提出了一个包含负离子的简化数学模型。首先通过将一维预混火焰与可用的实验数据进行比较来评估这种机理。然后将其用于分析在存在直接或交变电场的情况下扩散提升火焰的稳定机制。得出的结论是,负离子的作用至关重要,并且不容忽视。此外,模拟表明,火焰稳定性改善的幅度主要取决于所施加电压的强度和极性。如果施加的电压是交流电压,则其频率也会影响火焰稳定性的改善程度。

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