首页> 外文会议>55th International Astronautical Congress 2004 vol.7 >MICROGRAVITY INVESTIGATION OF LAMINAR FLAME PROPAGATION IN MONODISPERSE GAS-DROPLET MIXTURES
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MICROGRAVITY INVESTIGATION OF LAMINAR FLAME PROPAGATION IN MONODISPERSE GAS-DROPLET MIXTURES

机译:单分散气-滴混合气中层流火焰传播的微重力研究

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A model of unsteady-state laminar flame propagation under no-gravity conditions in a mono-disperse mixture of a gaseous oxidizer with droplets of a liquid fuel was developed. The results obtained during our theoretical study of the model were compared with experiments made in microgravity. An explanation for the experimentally measured anomalous non-monotone dependence of the flame propagation velocity on droplet size was given. It was shown that such a dependence could be observed immediately after ignition on segments where the process of flame propagation was unsteady. When the process became self-sustaining and steady, the normal velocity of flame propagation monotonically depended on droplet size (for small droplets, this velocity did not practically change as droplet diameters varied). Thus it was demonstrated that for a steady-state self-sustained process the flame propagation velocity monotonically decreases on increasing droplet size.
机译:建立了无重力条件下层状火焰在气态氧化剂与液体燃料小滴的单分散混合物中传播的模型。我们在模型的理论研究过程中获得的结果与微重力实验进行了比较。给出了火焰传播速度对液滴尺寸的实验测量异常非单调依赖性的解释。结果表明,这种依赖可以在点燃后立即观察到火焰传播过程不稳定的部分。当过程变得自持且稳定时,火焰的正常传播速度将单调取决于液滴大小(对于小液滴,该速度实际上不会随着液滴直径的变化而变化)。因此证明,对于稳态的自我维持过程,火焰传播速度随着液滴尺寸的增加而单调降低。

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