首页> 外文期刊>Combustion Science and Technology >BURNING RATES AND FLAME OSCILLATIONS IN GLOBALLY HOMOGENEOUS TWO-PHASE MIXTURES (FLAME SPEED OSCILLATIONS IN DROPLET CLOUD FLAMES)
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BURNING RATES AND FLAME OSCILLATIONS IN GLOBALLY HOMOGENEOUS TWO-PHASE MIXTURES (FLAME SPEED OSCILLATIONS IN DROPLET CLOUD FLAMES)

机译:全球同质两相混合物中的燃烧速率和火焰振荡(液滴云火焰中的火焰振荡)

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摘要

The study of spray combustion in industrial equipment is difficult due to the multiplicity of interdependent variables. Therefore, a combustion vessel was used for fundamental studies of aerosol combustion, under strictly controlled conditions of pressure, temperature and equivalence ratio. The droplet clouds were characterized using laser diagnostics, variables such as Sauter mean diameter, number density, gas and liquid equivalence ratios were determined. Nearly mono-sized droplet clouds were obtained in this vessel being the droplet diameter a function of time. The phenomenon of flame oscillation, the cyclic variation of flame speed during flame development, has been addressed in the past using several approaches but there is no yet a unique accepted explanation. The combustion studies in the present work revealed the differences between the speed of droplets and the gas velocity near the flame front. These resulted in variations in local equivalence ratio, which in turn manifested in flame speed oscillations.
机译:由于相互依赖的变量众多,因此难以研究工业设备中的喷雾燃烧。因此,在严格控制压力,温度和当量比的条件下,将燃烧容器用于气溶胶燃烧的基础研究。使用激光诊断仪对液滴云进行了表征,并确定了诸如索特平均直径,数密度,气体和液体当量比之类的变量。在该容器中获得了几乎单一大小的液滴云,液滴直径是时间的函数。过去已经使用几种方法解决了火焰振荡现象,即火焰发展过程中火焰速度的周期性变化,但目前尚无唯一的公认解释。当前工作中的燃烧研究揭示了液滴速度和火焰前沿附近气体速度之间的差异。这些导致局部当量比的变化,这又表现为火焰速度振荡。

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