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Numerical Analysis on Propagation Characteristics and Safety Distance of Gas Explosion

机译:瓦斯爆炸传播特性与安全距离的数值分析

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Through a roadway model with cross-section area of 80x80 mm2 and length of 100 m, the changing laws of overpressure, temperature, density, combustion rate and gas velocity after the explosion of methane-air mixtures with concentration of 9.5% and filling lengths of 2 m, 6 m, 10 m and 14 m were simulated by using AutoReaGas software. The results show that in the explosion propagation process, the peak overpressure firstly decreases, then increases, and then attenuates until to zero. However, flame propagation speed firstly increases, then begins to reduce and decreases until to zero. With the increase of methane filling length, the safety distance firstly increases and then decreases slightly, and the maximum distance of flame propagation increases linearly. With the increase of methane filling length, the initial peak overpressure and the maximum peak overpressure obviously increase, the peak overpressure and the maximum temperature in other points almost continually increase, and the distance where peak overpressure begins to rise and obtains its maximum value also increases. The time of flame arrival in the same point at various filling lengths is almost the same before flame speed begins to decrease, indicating that flame speed is almost the same before it decreases. Research results can be used to provide guidance for the safety of underground persons, the disaster relief and treatment of gas explosion in underground coal mines.
机译:通过截面积为80x80 mm2,长度为100 m的巷道模型,爆炸了浓度为9.5%的甲烷-空气混合物爆炸后,其填充长度为9.5%的甲烷,空气混合物的超压,温度,密度,燃烧速率和气体速度的变化规律。使用AutoReaGas软件模拟了2 m,6 m,10 m和14 m。结果表明,在爆炸传播过程中,峰值超压先减小然后增大,然后衰减直至为零。然而,火焰传播速度首先增加,然后开始减小并减小直到零。随着甲烷充填长度的增加,安全距离先增大后减小,而火焰传播的最大距离线性增加。随着甲烷充填长度的增加,初始峰值超压和最大峰值超压明显增加,其他地方的峰值超压和最高温度几乎连续增加,峰值超压开始上升并获得其最大值的距离也增大。 。在不同的填充长度下,火焰到达同一点的时间在火焰速度开始降低之前几乎是相同的,这表明火焰速度在降低之前几乎是相同的。研究结果可为地下煤矿人员的安全,救灾和地下煤矿瓦斯爆炸的处理提供指导。

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