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Bidirectional ionic wind in nonpremixed counterflow flames with DC electric fields

机译:具有直流电场的非预混逆流火焰中的双向离子风

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Under an electric field, ions in the reaction zone of a flame generate a bulk flow motion called ionic wind. Because the majority of ions are positive, ionic wind is commonly considered to be unidirectional toward the cathode. A more thorough understanding of the effects of electric fields on flames could be obtained by clarifying the role of minor negative ions in the ionic wind. Here, we report on the effects of direct current on nonpremixed counterflow flames by visualizing the ionic wind. We found that the original flow field separates near the flame when it locates at a flow stagnation plane, resulting in a double stagnant flow configuration. This evidences a bidirectional ionic wind blowing from the flame to both the cathode and the anode due to the positive and the negative ions, respectively. Meanwhile, an electric body force pulls the flame toward the cathode. Thus, the electric field affects the strain rate and the axial location of the stoichiometry, which are important for characterizing nonpremixed counterflow flames. In addition, measurement of the electric current density roughly showed a nearly saturated current when these flames restabilized under relatively high voltage. Detailed explanations of flame behavior, electric currents, and flow characteristics of various fuels are discussed in this study. (C) 2016 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:在电场下,火焰反应区中的离子会产生称为离子风的整体运动。因为大多数离子是正离子,所以离子风通常被认为是朝向阴极的单向离子。通过阐明次要负离子在离子风中的作用,可以更全面地了解电场对火焰的影响。在这里,我们通过可视化离子风来报告直流电对非预混逆流火焰的影响。我们发现,当火焰位于流动停滞平面时,原始流场在火焰附近分离,从而导致双重停滞流动。这证明了分别由于正离子和负离子而从火焰吹向阴极和阳极的双向离子风。同时,电场力将火焰拉向阴极。因此,电场影响应变率和化学计量的轴向位置,这对于表征未预混合的逆流火焰很重要。另外,当这些火焰在较高电压下恢复稳定时,电流密度的测量大致显示出接近饱和的电流。本研究讨论了火焰行为,电流和各种燃料的流动特性的详细说明。 (C)2016年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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