首页> 外文会议>Proceedings of the Combustion Institute >LIFTED FLAME STABILIZATION IN DEVELOPING AND DEVELOPED REGIONS OF COFLOW JETS FOR HIGHLY DILUTED PROPANE
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LIFTED FLAME STABILIZATION IN DEVELOPING AND DEVELOPED REGIONS OF COFLOW JETS FOR HIGHLY DILUTED PROPANE

机译:高稀释丙烷气流喷嘴在发达和发达地区的起升火焰稳定

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Stabilization of lifted flames has been investigated experimentally for highly diluted propane with nitrogen in coflow. For various fuel mole fractions and jet velocities, three distinct flame types are observed: nozzle attached flames, stationary lifted flames, and oscillating lifted flames. When fuel jet velocity is much smaller than coflow velocity, the base of a nozzle attached flame is observed to have a tribrachial structure. Based on the balance mechanism of the propagation speed of a tribrachial flame with flow velocity, jet velocity is scaled with stoichiometric laminar burning velocity. Results show two distinctive lifted flame stabilization modes―stabilization in the developing region and stabilization in the developed region of jets―depending on the initial fuel mole fraction. It has been found that a lifted flame can be stabilized for a fuel velocity even smaller than the stoichiometric laminar burning velocity. This behavior has been attributed to the buoyancy effect, and flow visualization supports it. Oscillating lifted flames are observed with the frequency range of 3-4.5 Hz by the repetitive action of buoyancy due to increased and decreased burning rates during falling and rising periods of flame oscillation.
机译:对于在氮气流中高度稀释的丙烷和氮气,已通过实验研究了稳定火焰的方法。对于各种燃料摩尔分数和喷射速度,观察到三种不同的火焰类型:喷嘴附着的火焰,固定的提升火焰和振荡的提升火焰。当燃料喷射速度远小于同流速度时,观察到附有喷嘴的火焰的底部具有三臂结构。基于三臂火焰传播速度与流速的平衡机制,射流速度与化学计量层流燃烧速度成比例。结果表明,取决于初始燃料摩尔分数,两种独特的提升火焰稳定模式-喷射区域的稳定和喷射区域的稳定-取决于初始燃料摩尔分数。已经发现,对于甚至小于化学计量层流燃烧速度的燃料速度,可以稳定火焰。此行为已归因于浮力效应,并且流量可视化对此提供了支持。由于在火焰振荡的上升和下降期间燃烧速率的增加和降低,由于浮力的重复作用,在3-4.5 Hz的频率范围内观察到振荡的抬升火焰。

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