4.7 Article

Flame characteristics of premixed H2-air mixtures explosion venting in a spherical container through a duct

Journal

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY
Volume 46, Issue 52, Pages 26693-26707

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ijhydene.2021.05.148

Keywords

Explosion venting with a duct; Jet flame characteristics; Secondary combustion; Coupling process; Explosion venting design

Funding

  1. Natural Science Foundation of Shanxi Province, China [201901D211228, 201903D121028]
  2. National Defense Key Laboratory Foundation of Science and Technology on Combustion and Explosive Laboratory, China [6142603200509, 6142603180408]
  3. Shanghai Rising-Star Program, China [21QC1400400]

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The study found that under certain conditions, a high hydrogen fraction can make secondary combustion easier to occur and increase the duration of the secondary flame; meanwhile, an increase in the length of the venting duct will result in an increase in the flame front distance and propagation velocity.
The explosion venting duct can effectively reduce the hazard degree of a gas explosion and conduct the venting energy to the safe area. To investigate the flame quantitative propagation law of explosion venting with a duct, the effects of hydrogen fraction and explosion venting duct length on jet flame propagation characteristics of premixed H-2-air mixtures were analyzed through experiment and simulation. The experiment results under initial conditions of room temperature and 1 atm show that when hydrogen fraction was high enough, part of the unburned hydrogen was mixed with air again to reach an ignitable concentration, resulting in the secondary combustion was easier produced and the duration of the secondary flame increased. With the increase of venting duct length, the flame front distance and propagation velocity increased. Meanwhile, the spatial distribution of pressure field and temperature field, and the propagation process and mechanism of the flame venting with a duct were analyzed using FLUENT software. The variation of the pressure wave and the pressure reflection oscillation law in the explosion venting duct was captured. Therefore, in the industrial explosion venting design with a duct, the hazard caused by the coupling of venting pressure and venting flame under different fractions should be considered comprehensively. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.

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