Experiments reveal how venting duct position and aspect ratio influence explosion dynamics in methane, suggesting safety measures for industrial applications.
This study examines the combined effects of venting duct position (S) and length‐to‐diameter ratio (L/D) on methane/air mixture explosion venting. A dedicated test system was constructed, and experiments were conducted with different S (0.25, 0.5, and 0.75 m) and L/D (6.25, 8.3, 12.5, 16.7, 25) values. The venting duct significantly influenced flame structure, categorized into four stages: venting, backflow, re‐venting, and strengthening. Smaller aspect ratios and closer proximity to the ignition end resulted in lower maximum explosion overpressure, rise rate, and dynamic pressure. Secondary explosions were more prevalent at larger S and smaller L/D ratios, with a peak pressure of 90.43 kPa. Conversely, secondary burstings in the main tube were more likely at larger S and L/D values, reaching 70.6 kPa. An empirical formula correlating P_max with S and L/D was derived to elucidate their coupled effect on methane/air mixture explosion behavior.
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Song et al. (2025) studied this question.
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