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A numerical study on the formation of diffusion flame islands in a turbulent hydrogen jet lifted flame

机译:湍流氢气喷射火焰中扩散火焰岛形成的数值研究

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This paper presents a numerical study on the formation of diffusion flame islands in a hydrogen jet lifted flame. A real size hydrogen jet lifted flame is numerically simulated by the DNS approach over a period of about 0.5 ms. The diameter of hydrogen injector is 2 mm, and the injection velocity is 680 m/s. The lifted flame is composed of a stable leading edge flame, a vigorously turbulent inner rich premixed flame, and a number of outer diffusion flame islands. The relatively long-term observation makes it possible to understand in detail the time-dependent flame behavior in rather large time scales, which are as large as the time scale of the leading edge flame unsteadiness. From the observation, the following three findings are obtained concerning the formation of diffusion flame islands. (1) A thin oxygen diffusion layer is developed along the outer boundary of the lifted flame, where the diffusion flame islands burn in a rather flat shape. (2) When a diffusion flame island comes into contact with the fluctuating inner rich premixed flame, combustion is intensified due to an increase in the hydrogen supply by molecular diffusion. This process also works for the production of the diffusion flame islands in the oxygen diffusion layer. (3) When a large unburned gas volume penetrates into the leading edge flame, the structure of the leading edge flame changes. In this transformation process, a diffusion flame island comes near the leading edge flame. The local deficiency of oxygen plays an important role in this production process.
机译:本文提出了氢气喷射升降火焰中扩散火焰岛的形成的数值研究。通过约0.5ms的时期,通过DNS方法数值模拟真实尺寸的氢气喷射火焰。氢气注射器的直径为2mm,注射速度为680米/秒。提升的火焰由稳定的前缘火焰组成,剧烈湍流的内部富有的预混火焰,以及许多外扩散火焰岛。相对长期的观察使得可以详细了解相当大的时间尺度的时间依赖性的火焰行为,这与前沿火焰不稳定的时间尺度一样大。从观察开始,关于形成扩散火焰岛的形成。 (1)沿着提升火焰的外边界开发薄的氧漫射层,其中扩散火焰岛在相当平坦的形状中燃烧。 (2)当扩散火焰岛与波动的内部富富型预混火焰接触时,由于分子扩散的氢气供应的增加而强化燃烧。该过程还适用于生产氧气扩散层中的扩散火焰岛的生产。 (3)当大型未燃烧的气体容积渗透到前缘火焰中时,前缘的结构变化。在该转化过程中,扩散火焰岛靠近前缘火焰。氧气的局部缺乏在这一生产过程中起着重要作用。

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