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Mechanisms and occurrence of detonations in vapor cloud explosions

机译:蒸气云爆炸的爆炸机理和发生

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Not all accidental releases of flammable gases and vapors create explosions. Most releases do not find an ignition source, and of those that do ignite, most of them result in deflagrations that generate low or moderate overpressures. Under some circumstances, however, it is possible for deflagration-to-detonation transition (DDT) to occur, and this can be followed by a propagating detonation that quickly consumes the remaining detonable cloud. In a detonable cloud, a detonation creates the worst accident that can happen. Because detonation overpressures are much higher than those in a deflagration and continue through the entire detonable cloud, the damage from a DDT event is more severe.This paper first provides a brief summary of our knowledge to date of the fundamental mechanisms of flame acceleration and DDT. This information is then contrasted to and combined with evidence of detonations (detonation markers) obtained from large-scale tests and actual large vapor cloud explosions (VCEs), including events at Buncefield (UK), Jaipur (India), CAPECO (Puerto Rico), and Port Hudson (US). The major conclusion from this review is that detonations did occur in prior VCEs in at least part of the VCE accidents. Finally, actions are suggested that could be taken to minimize detonation hazards. (c) 2019 The Authors. Published by Elsevier Ltd.
机译:并非所有意外释放的可燃气体和蒸气都会引起爆炸。大多数释放物找不到点火源,而确实释放的那些,大多数会导致爆燃,从而产生低或中等的超压。但是,在某些情况下,可能会发生爆燃-爆轰过渡(DDT),然后是传播的爆轰,迅速消耗了剩余的可爆云。在可爆炸的云中,爆炸会造成最严重的事故。由于爆炸超压比爆燃时的超压高得多,并且持续遍及整个爆炸云,因此DDT事件造成的损害更为严重。本文首先简要概述了迄今为止我们对火焰加速和DDT基本机理的认识。 。然后将此信息与从大规模测试和实际大型蒸气云爆炸(VCE)中获得的爆炸(爆炸标记)证据进行对比,并结合这些证据,包括在Buncefield(英国),斋浦尔(印度),CAPECO(波多黎各)发生的事件,和哈德逊港(美国)。这次审查的主要结论是,至少在部分VCE事故中,以前的VCE确实发生过爆炸。最后,建议采取措施将爆炸危险降至最低。 (c)2019作者。由Elsevier Ltd.发布

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