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Experimental evaluation and analysis of methane fire and explosion mitigation using isolation valves integrated with a vent system

机译:用通风系统集成的隔离阀的实验评价与爆炸缓解

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摘要

There has been a surge of interest from the extractive industries in the application of mechanical means to the mitigation of flame deflagration. To verify the implementation and performance of passive and active mitigation protection, a comprehensive experimental investigation has been conducted on a large scale detonation tube, 30 m long and 0.5 m in diameter, with two mitigation valves (passive and active) and a burst panel venting system. The valves were used alternately to mitigate the flame deflagration of methane in concentrations ranging from 1.25% to 7.5%. The experimental work revealed that locating the passive mitigation valve at 22 m distance from the ignition source mitigates the flame by fully isolating the tube. However, closing the valve structure in the axial direction generated another pressure wave upstream, which was approximately the same value as for the original pressure wave upstream. In the case of the active mitigation system, the system perfectly isolated upstream from downstream with no further pressure wave generation. When the vent was located at 6.5 m from the ignition source, the total pressure was reduced by 0.48 bar. Due to the counter flow of the reflected pressure wave the flame was extinguished at 12.5 m from the ignition source.
机译:采掘行业兴趣飙升,在应用机械手段对阻燃爆燃的缓解时。为了验证被动和主动缓解保护的实施和性能,在大规模的爆炸管,30米长和0.5米的直径上进行了全面的实验研究,具有两个缓解阀(被动和有源)和爆破面板通风系统。阀门交替使用,以减轻甲烷的火焰净化,其浓度范围为1.25%至7.5%。实验工作显示,通过完全隔离管来将被动缓解瓣膜从点火源距离降低火焰。然而,在轴向上闭合阀结构在上游产生另一个压力波,其与上游的原始压力波的值大致相同。在有源缓解系统的情况下,系统完美地从下游隔离上游,没有进一步的压力波。当通风口从点火源位于6.5米时,总压力减少0.48巴。由于反射压力波的计数器流动,火焰从点火源熄灭为12.5μm。

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