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Flow Pattern, Mixing Fields and Ignition Stability fo Industrial Type Turbulent Swirling Flames

机译:流动模式,混合场和工业型湍流旋流火焰的点火稳定性

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An experimental study of flame stabilization in confined natural gas swirling flames has been performed in the heat release range 75-250 kW. The primary objective was to explain the blow-off mechanism for enclosed swirling flames using detailed in-flame measureemnts. The main conclusion is that flame stability depends on the gas residence time in the ignition zone. Higher inlet velocities lead to delayed heat release, combined with lower thermal feed into the inner recirculation zone. That causes a lower heat input into the flame root, finally resulting in flame blow-off.
机译:在75-250kW的热释放范围内进行了狭窄的天然气旋转火焰中的火焰稳定的试验研究。主要目标是使用详细的火焰测量来解释封闭旋转火焰的吹气机制。主要结论是火焰稳定性取决于点火区中的气体停留时间。更高的入口速度导致延迟的热释放,与较低的热进料结合到内再循环区域。这导致较低的热量输入到火焰根部中,最终导致火焰吹扫。

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