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Influence Of A Horizontal Magnetic Field On A Co-flow Methane/air Diffusion Flame

机译:水平磁场对并流甲烷/空气扩散火焰的影响

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Influence of magnetic fields on the liftoff and blow out properties of the methanelair co-flow diffusion flame has been investigated experimentally. The present experiments showed that magnetic gradients are able to minimize the liftoff height and increase the flow rate above which the flame blows out. This observed increase of stability of lifted flames is attributed to the magnetic force that develops on paramagnetic oxygen in magnetic gradients. Two mechanisms are provided to explain the extension of the lifted flame stability. By decreasing locally the air velocity upstream of the flame, the magnetic force, resulting from an upward decreasing magnetic field, modifies the fuel mixture fraction at the flame edge, reducing the liftoff height of the flame. The second mechanism is related to the variation of the magnetic susceptibility with temperature and oxygen mass fraction in which originates a magnetic convection phenomenon in air in the flame vicinity.
机译:已经通过实验研究了磁场对甲烷井共流扩散火焰的升起和吹出特性的影响。本实验表明,磁性梯度能够使升空高度最小化,并增加火焰吹出的流速。观察到的火焰上升稳定性的增加归因于在磁性梯度中顺磁性氧上产生的磁力。提供了两种机制来解释提升的火焰稳定性的扩展。通过局部降低火焰上游的空气速度,由向上减小的磁场产生的磁力改变了火焰边缘处燃料混合物的比例,从而降低了火焰的升起高度。第二种机制与磁化率随温度和氧气质量分数的变化有关,其中在火焰附近的空气中产生磁对流现象。

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