• [口頭報告]Influence of oxygen concentration on the combustion characteristics and chemical mechanism of coal mine methane in closed chamber
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    [口頭報告]Influence of oxygen concentration on the combustion characteristics and chemical mechanism of coal mine methane in closed chamber

    Influence of oxygen concentration on the combustion characteristics and chemical mechanism of coal mine methane in closed chamber
    編號:263 稿件編號:321 訪問權限:僅限參會人 更新:2024-05-19 19:56:44 瀏覽:146次 口頭報告

    報告開始:2024年05月30日 20:50 (Asia/Shanghai)

    報告時間:10min

    所在會議:[S2] Safety Engineering and Occupational Health ? [S2-5A] Evening of May 30th-5A

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    摘要
    To reveal the combustion mechanism of coal mine methane with different oxygen concentration, a series of combustion experiments on the CH4/O2/N2 blends were conducted at a cylindrical chamber. The influences of oxygen concentration on the flame structure, combustion pressure and flame instability of methane blends with different concentrations were analysed. The results show that lower oxygen concentrations cause inversions formed in the lower flame fronts of methane spherical flames by buoyancy effect. Since the effective Lewis number of CH4/O2/N2 blends is always greater than 1 at different oxygen and methane concentrations, the Thermal-Diffusion instability does not promote spherical flame inversion. Moreover, the thinner flame thickness can promote the flame front sensitivity to stretching rate, which indicates that the thinner flame thickness the more easily to form a flame winkle affected by flame instability. The increase of oxygen concentration significantly enhances the combustion pressure and pressure rise rate of methane blends, while the reduction in methane concentration weakens the sensitivity of combustion pressure to oxygen concentration. In addition, spherical flame inversion attenuates the generation of quench expansion waves, thereby suppressing the methane pressure rise and maximum combustion pressure.
    關鍵字
    Coal mine methane; Spherical flame; Combustion pressure; Flame instability; Chemical kinetics
    報告人
    Feixiang Zhong
    China University of Mining and Technology

    稿件作者
    飛翔 鐘 中國礦業大學
    慶釗 李 中國礦業大學安全工程學院
    鑫鑫 劉 中國礦業大學
    熊 丁 中國礦業大學
    寶通 李 中國礦業大學
    政陽 于 中國礦業大學
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