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Effect Of Gravity And Beam Diameter On Flame Oscillation Phenomena Induced By External Laser Absorption

机译:重力和光束直径对外部激光吸收引起的火焰振荡现象的影响

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The effect of gravity and beam diameter on flame oscillation phenomena induced by external laser irradiation was investigated. Ethylene premixed gas was charged in a 50 mm diameter combustion tube at 0.1 MPa and a CO_2 laser beam was irradiated along the center axis of the tube. The microgravity maintained during the experiment assures that presently observed oscillation phenomena are not caused by gravity. Experiments with different laser beam diameters indicate that the flame front curvature affects the oscillatory propagation behavior. The results suggest that this phenomenon is caused by a transformation of the flame front curvature by a locally increased flame speed observed with the laser absorption, which is closely related to the thermal-diffusive instability in combination with a flame stretch effect.
机译:研究了重力和光束直径对外部激光辐照引起的火焰振荡现象的影响。将乙烯预混合气体以0.1 MPa的压力装入直径为50 mm的燃烧管中,并沿该管的中心轴照射CO_2激光束。在实验过程中保持的微重力确保了目前观察到的振荡现象不是由重力引起的。不同激光束直径的实验表明,火焰前曲率会影响振荡传播行为。结果表明,这种现象是由激光吸收所观察到的局部增加的火焰速度引起的火焰前曲率的转变引起的,这与热扩散不稳定性以及火焰拉伸效应密切相关。

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