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Analysis of Flame Extinguishment and Height in Low Frequency Acoustically Excited Methane Jet Diffusion Flame

机译:低频声激发甲烷射流扩散火焰的熄灭和高度分析

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The exploration of microgravity conditions in space is increasing and existing fire extinguishing technology is often inadequate for fire safety in this special environment. As a result, improving the efficiency of portable extinguishers is of growing importance. In this work, a visual study of the effects on methane jet diffusion flames by low frequency sound waves is conducted to assess the extinguishing ability of sound waves. With a small-scale sound wave extinguishing bench, the extinguishing ability of certain frequencies of sound waves are identified, and the response of the flame height is observed and analyzed. Results show that the flame structure changes with disturbance due to low frequency sound waves of 60-100 Hz, and quenches at effective frequencies in the range of 60-90 Hz. In this range, 60 Hz is considered to be the quick extinguishing frequency, while 70-90 Hz is the stable extinguishing frequency range. For a fixed frequency, the flame height decreases with sound pressure level (SPL). The flame height exhibits the greatest sensitivity to the 60 Hz acoustic waves, and the least to the 100 Hz acoustic waves. The flame height decreases almost identically with disturbance by 70-90 Hz acoustic waves.
机译:在太空中对微重力条件的探索正在增加,并且在这种特殊环境下,现有的灭火技术通常不足以实现消防安全。结果,提高便携式灭火器的效率变得越来越重要。在这项工作中,对低频声波对甲烷喷射扩散火焰的影响进行了视觉研究,以评估声波的灭火能力。在小型声波灭火台上,确定了某些频率的声波的灭火能力,并观察和分析了火焰高度的响应。结果表明,火焰结构由于60-100 Hz的低频声波而随扰动而变化,并在60-90 Hz的有效频率下淬火。在此范围内,60 Hz被认为是快速灭火频率,而70-90 Hz被认为是稳定的灭火频率范围。对于固定频率,火焰高度随声压级(SPL)降低。火焰高度对60 Hz的声波表现出最大的敏感性,而对100 Hz的声波表现出最小的敏感性。在受到70-90 Hz声波的干扰时,火焰高度下降几乎相同。

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