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Influences of a Pipeline's Bending Angle on the Propagation Law of Coal Dust Explosion Induced by Gas Explosion

机译:管道弯曲角度对气爆煤粉尘爆炸繁殖规律的影响

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摘要

A pipeline explosion system with different bending angles (45?, 60?, 90?, 120?, and 135?) was constructed to investigate the influences of the pipeline?s bending angles on the propagation law of coal dust explosion induced by gas explosion. The change laws of the shock wave and flame after bending were analyzed. Results demonstrate that gas explosion can induce the explosion of deposited dust. After the explosion, the peak overpressure of the shock wave increases dramatically and then decreases slowly after the corner. The attenuation rate of the peak overpressure increases with the increase in the pipeline?s bending angle. The flame propagation speed decreases first and then increases significantly after the corner. The change rate of flame propagation speed is positively related to the bending angle of pipelines. The flame front area presents a reverse V-shaped variation that greatly increases after the corner. Furthermore, the growth rate of the flame front area is positively related to the bending angle of pipelines.
机译:构建具有不同弯曲角度(45〜60〜,90〜90〜90〜120°30.)的管道爆炸系统,以研究管道弯曲角度对气体爆炸诱导煤粉爆炸繁殖规律的影响。分析了弯曲后冲击波和火焰的变化规律。结果表明,煤气爆炸可以诱导沉积粉尘的爆炸。爆炸后,冲击波的峰值超压显着增加,然后在角落之后缓慢降低。随着管道弯曲角度的增加,峰值过压的衰减率增加。火焰传播速度首先减小,然后在拐角后显着增加。火焰传播速度的变化率与管道的弯曲角度正相关。火焰前部面积呈现反向V形变形,在角落之后大大增加。此外,火焰前部区域的生长速率与管道的弯曲角度正相关。

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