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Effect of Flameout on Combustion of Small Particles in an Acoustically Oscillating Flow

机译:熄火对声振荡流中小颗粒燃烧的影响

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Combustion of magnesium and titanium particles in an acoustically oscillating flow is experimentally studied for the the case where the particle dimensions are smaller than the amplitude of gas displacement in an acoustic wave.An increase in the combustion time of magnesium particles and a decrease in the combustion time of titanium particles upon application of acoustic vibrations is found.Characteristic features of fluctuations of the intensity of the luminous flux of a burning magnesium particle as a response to vapor-phase burning of a metal drop to an external acoustic action are revealed.An explanation of the shape of registered fluctuations is offered on the basis of an assumption about flame-front blowoff from the frontal point of the drop.Condi-tions necessary for flameout in an oscillating flow and effects that can be induced by flameout from the drop in the case of burning of sprayed fuels in intermittent burning devices are discussed.
机译:对于颗粒尺寸小于声波中气体置换幅度的情况,通过实验研究了镁和钛颗粒在声振荡流中的燃烧。镁颗粒的燃烧时间增加而燃烧减少揭示了钛粒子在施加声振动时的时间。揭示了燃烧的镁粒子的光通量强度随金属液滴的气相燃烧对外部声作用的响应而变化的特征。假设波动的形状是基于从液滴的前端开始的火焰前吹气的假设而提供的。振荡流中熄火所需的条件以及由液滴中的火焰熄灭可能引起的影响讨论了在间歇燃烧设备中燃烧喷洒燃料的情况。

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