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Application of flame arrester in mitigation of explosion and flame deflagration of ventilation air methane

机译:阻火器在缓解通风甲烷爆炸爆炸中的应用

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Fugitive methane emissions from underground coal mines are considered a potent greenhouse gas source with a large global warming potential. Application of ventilation air methane thermal oxidiser technology reduces this risk to a large extent. However, it imposes the risk of accidental fires and explosions in the mine site which may claim many lives and cause massive property damage. As such, the necessity of employing safety barriers such as flame arrester seems crucial to protect the mine against the accidental flames and explosion propagation originated from the thermal oxidiser.The aim of this work was to evaluate the effectiveness of an inline flame arrester for the mitigation of methane explosions in a large scale detonation tube. The results corresponding to this study indicated that the flame arrester was capable to effectively mitigate the explosion flames of 5%, 7.5% and 9.5% methane air mixtures (for a 10 m fuel filled section). The flame arrester reduced the pressure wave velocity by 88% and 40% for the explosions of methane-air mixtures of 7.5% and 9.5% methane, respectively. The flame propagation velocities for the 7.5% and 9.5% methane concentrations reduced approximately 32% and 44%, respectively. A significant pressure build-up was observed upstream of the flame arrester when compared with a duct without flame arrester. In addition, the build-up pressure was relatively higher for larger methane concentrations (e.g. 9.5%). These observations highlights that the maximum design pressure of an industrial process plant must be carefully considered when implementing an inline flame arrester due to the possibility of a sudden pressure increase cause by an explosion.
机译:地下煤矿产生的逃逸甲烷排放被认为是潜在的温室气体源,具有很大的全球变暖潜力。通风甲烷气热氧化技术的应用大大降低了这种风险。但是,这会在矿场中造成意外火灾和爆炸的危险,这可能会夺去许多生命并造成巨大的财产损失。因此,使用诸如火焰消除器之类的安全屏障的必要性似乎对于保护矿井免受热氧化剂引起的意外火焰和爆炸传播至关重要,该工作的目的是评估在线火焰消除器对缓解火灾的有效性。大型爆炸管中的甲烷爆炸。与该研究相对应的结果表明,该阻火器能够有效减轻5%,7.5%和9.5%甲烷空气混合物的爆炸火焰(对于10 m的燃料填充段)。对于7.5%和9.5%的甲烷-空气混合物的爆炸,阻火器将压力波速度分别降低了88%和40%。甲烷浓度为7.5%和9.5%的火焰传播速度分别降低了约32%和44%。与不带阻火器的管道相比,在阻火器上游观察到明显的压力累积。另外,对于较大的甲烷浓度(例如9.5%),堆积压力相对较高。这些观察结果表明,在安装在线阻火器时,必须谨慎考虑工业过程工厂的最大设计压力,因为爆炸可能会导致压力突然升高。

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