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Spontaneous Ignition of Pressurized Releases of Hydrogen and Natural Gas into Air

机译:氢气和天然气加压释放到空气中的自燃

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potential for producing ignition and continuing combustion. Much more experimental and computational work is required to quantitatively determine the envelope of parameter combinations that mitigate or enhance spontaneous ignition characteristics of compressed hydrogen as a result of sudden release, particularly if hydrogen is to become a major energy carrier interfaced with consumer use. Similar considerations for compressed methane, for mixtures of light hydrocarbons and methane (simulating natural gas), and for larger carbon number hydrocarbons show similar autoignition phenomena may occur with highly compressed methane or natural gas, but are unlikely with higher carbon number cases, unless the compressed source and/or surrounding air is sufficiently pre-heated above ambient temperature. Spontaneous ignition of compressed hydrocarbon gases is also generally less likely, given the much lower turbulent blow-off velocity of hydrocarbons in comparison to that for hydrogen.
机译:产生点火和持续燃烧的潜力。要定量确定参数组合的包络,需要做大量的实验和计算工作,这些参数组合可以缓解或增强由于突然释放而导致的压缩氢气的自燃特性,特别是如果氢气要成为与消费者使用相关的主要能源载体时。对于压缩甲烷,轻烃和甲烷的混合物(模拟天然气)以及较大碳数的烃,类似的考虑因素也表明,在高度压缩的甲烷或天然气中可能发生类似的自燃现象,但对于较高碳数的情况则不太可能,除非压缩的源和/或周围空气已被充分预热到环境温度以上。由于与碳氢化合物相比,碳氢化合物的湍流吹扫速度要低得多,因此通常也不太可能自发点燃压缩的碳氢化合物气体。

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