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Flame Quenching Dynamics of High Velocity Flames in Rectangular Cross-section Channels

机译:矩形截面通道中高速火焰的熄火动力学

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摘要

Understanding flame quenching for different conditions is necessary to develop safety devices like flame arrestors. In practical applications, the speed of a deflagration in the lab-fixed reference frame will be a strong function of the geometry through which the deflagration propagates. This study reports on the effect of the flame speed, at the entrance of a quenching section, on the quenching distance. A 2D rectangular channel joining two main spherical vessels is considered for studying this effect. Two different velocity regimes are investigated and referred to as configurations A, and B. For configuration A, the velocity of the flame is 20 m/s, while it is about 100 m/s for configuration B. Methane-air stoichiometric mixtures at 1 bar and 298 K are used. Simultaneous dynamic pressure measurements along with schlieren imaging are used to analyze the quenching of the flame. Risk assessment of re-ignition is also reported and analyzed.
机译:为了开发诸如避雷器的安全装置,必须了解不同条件下的熄火。在实际应用中,实验室固定参考框架中的爆燃速度将是爆燃传播通过的几何形状的强大函数。该研究报告了淬火段入口处火焰速度对淬火距离的影响。考虑研究连接两个主要球形血管的二维矩形通道。研究了两种不同的速度状态,并将其称为配置A和B。对于配置A,火焰速度为20 m / s,而对于配置B为约100 m / s。甲烷空气化学计量比为1 bar和298K。同时进行的动压测量和schlieren成像用于分析火焰的淬灭。还报告并分析了重新点火的风险评估。

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