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Effect of Electric Fields on the Liftoff of Nonpremixed Turbulent Jet Flames

机译:电场对非预混湍流射流火焰升起的影响

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The effect of electric fields on the liftoff of non-premixed turbulent jet flames has been investigated by applying high-voltage alternate current (ac) to the nozzle of propane fuel. Flame liftoff velocities and liftoff heights were measured as functions of applied voltage and frequency. The fuel jet velocity at flame liftoff increased and flame liftoff height decreased with increasing voltage, implying that the range of flame stability can be extended with the ac charging. Meanwhile, the effect was minimal when applying direct current (dc). This stabilization effect with ac charging was also influenced by the frequency. As the applied voltage increased, a streamer corona was generated between the flame edge and the nozzle. When the jet velocity and, thus, the liftoff height becomes large, then the ac charging effect disappeared in such a way that the flame liftoff height became comparable to that of a free jet without applying voltage. The liftoff velocity was correlated linearly with voltage in the corona-free electric field enhanced regime.
机译:通过对丙烷燃料喷嘴施加高压交流电(ac),已研究了电场对非预混湍流喷射火焰升起的影响。测量火焰剥离速度和剥离高度作为施加电压和频率的函数。火焰升起时的燃料喷射速度随电压的升高而增加,火焰升起高度降低,这表明随着交流充电,火焰稳定性的范围可以扩大。同时,施加直流电(dc)时影响最小。交流充电的稳定效果也受频率影响。随着施加电压的增加,在火焰边缘和喷嘴之间会产生流光化的电晕。当射流速度以及因此升空高度变大时,交流充电效果消失,使得火焰升空高度变得与不施加电压的自由射流相当。在无电晕电场增强状态下,升空速度与电压线性相关。

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