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Effects of changes in fuel volume on the explosion-proof distance and the multiparameter attenuation characteristics of methane-air explosions in a semi-confined pipe

机译:燃油量变化对半封闭管道甲烷-空气爆炸的防爆距离和多参数衰减特性的影响

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摘要

After establishing a semi-confined pipe model with a length of 100 m and a cross-sectional area of 0.08 m x 0.08 m, the multiparameter attenuation characteristics of gas explosions were revealed for fuel volumes of 0.0128 m(3), 0.0384 m(3), 0.064 m(3), and 0.0896 m(3). The results showed that the maximum overpressure presented a changing trend of decreasing, increasing and decreasing with increasing distance away from the ignition source. The peak overpressure formed by the shock wave, the flame propagation speed, the maximum density, gas velocity, and combustion rate all followed a trend of increasing and decreasing. However, the peak overpressure formed by the sonic compression wave and the maximum temperature decreased gradually as the distance increased. The fuel volume had a distinct effect on the overpressure, density, temperature, gas velocity, and combustion rate of gas explosions. The maximum overpressure, density, temperature, gas velocity, and combustion rate among all of the gauge points increased as the fuel volume increased, and they were almost all linear functions of the fuel volume. The explosion-proof safety distance tended to increase with increasing fuel volume, while the flameproof distance increased linearly. These results can provide theoretical guidance for the disaster relief efforts of the gas explosion in the process industry. (C) 2015 Elsevier Ltd. All rights reserved.
机译:建立长度为100 m,横截面积为0.08 mx 0.08 m的半封闭管道模型后,揭示了燃料体积为0.0128 m(3),0.0384 m(3)的气体爆炸的多参数衰减特性。 ,0.064 m(3)和0.0896 m(3)。结果表明,随着距点火源距离的增加,最大超压呈现出减小,增大和减小的变化趋势。由冲击波,火焰传播速度,最大密度,气体速度和燃烧速率形成的峰值超压都遵循增加和减少的趋势。但是,随着距离的增加,声压波和最高温度形成的峰值超压逐渐减小。燃料量对气体爆炸的过压,密度,温度,气体速度和燃烧速率有明显影响。随着燃油量的增加,所有压力表点中的最大超压,密度,温度,气体速度和燃烧率均增加,并且几乎都是燃油量的线性函数。防爆安全距离倾向于随着燃油量的增加而增加,而隔爆距离则线性增加。这些结果可为过程工业中瓦斯爆炸的救灾工作提供理论指导。 (C)2015 Elsevier Ltd.保留所有权利。

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