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受限空间氢泄爆外部超压特性研究
引用本文:陈 晔,李 毅,李紫婷,纪 超.受限空间氢泄爆外部超压特性研究[J].消防科学与技术,2022,41(3):310-315.
作者姓名:陈 晔  李 毅  李紫婷  纪 超
作者单位:(应急管理部天津消防研究所,天津300381)
基金项目:应急管理部天津消防研究所基科费项目(2020SJ10)
摘    要:作为一种清洁环保的二次能源,氢能已得到世界各国的高度关注,尤其是在"碳达峰""碳中和"的背景下,氢能必将迎来更加广阔的发展前景.然而,由于氢气具有爆炸极限范围宽、点火能低及燃烧速率快等特点,在受限空间内发生的意外氢泄漏极有可能引发爆炸.爆炸泄压是减轻爆炸后果的有效方法,但目前国内外对受限空间内氢爆炸泄压方面的研究相对有...

关 键 词:消防  氢气  泄爆  外部超压  分布模式  危害范围

Study on the characteristics of external overpressure induced by vented hydrogen deflagrations
CHEN Ye,LI Yi,LI Zi-ting,JI Chao.Study on the characteristics of external overpressure induced by vented hydrogen deflagrations[J].Fire Science and Technology,2022,41(3):310-315.
Authors:CHEN Ye  LI Yi  LI Zi-ting  JI Chao
Affiliation:(Tianjin Fire Science and Technology Research Institute of MEM, Tianjin 300381, China)
Abstract:The existing researches mainly focus on the development of internal pressures in the confined space during hydrogen explosions, and the studies about the distribution law and evolution mechanism of external overpressure during vented hydrogen explosions are still not enough. Therefore, a commercial FLACS was used to establish the numerical model of the chamber, the vent size was increased to 3.14 m2 and the maximum hydrogen concentration was increased to 30%, then numerous simulations were conducted to study the formation of the external explosion, the distribution rule of the external overpressure and the hazard scope. The effect of factors on the external overpressures during vented hydrogen deflagrations was also analyzed. The results show that when the vent size becomes relatively large, the vented hydrogen deflagration will lead to the formation of the external combustible gas cloud with a larger volume. Then the cloud is ignited by the emerging flame to produce an external explosion, and the whole formation process of the external explosion can be effectively simulated by FLACS. When the vent size is large, the maximum overpressures at different positions exhibit monotonic behavior as hydrogen concentrations increase, but a non-monotonic behavior of the change rate of overpressure between different positions near the vent opening as a function of hydrogen concentration is found. For the different ignition locations, maximum overpressures near the vent opening are distributed in different shapes of wedge, but the distribution modes of the hazard scope are totally different, the external overpressure and hazard scope with the back ignition are larger than those with the center ignition.
Keywords:fire protection  hydrogen  vented deflagration  external overpressure  distribution mode  hazard scope  
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