Experimental study on DDT for hydrogen–methane–air mixtures in tube with obstacles

An experimental study of flame propagation, acceleration and transition to detonation in stoichiometric hydrogen–methane–air mixtures in 6 m long tube filled with obstacles located at different configurations was performed. The initial conditions of the hydrogen–methane–air mixtures were 1 atm and 2...

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Veröffentlicht in:Journal of loss prevention in the process industries 2013-03, Vol.26 (2), p.374-379
Hauptverfasser: Porowski, R., Teodorczyk, A.
Format: Artikel
Sprache:eng
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Zusammenfassung:An experimental study of flame propagation, acceleration and transition to detonation in stoichiometric hydrogen–methane–air mixtures in 6 m long tube filled with obstacles located at different configurations was performed. The initial conditions of the hydrogen–methane–air mixtures were 1 atm and 293 K. Four different cases of obstacle blockage ratio (BR) 0.7, 0.6, 0.5 and 0.4 and three cases of obstacle spacing were used. The wave propagation was monitored by piezoelectric pressure transducers PCB. Pressure transducers were located at different positions along the channel to collect data concerning DDT and detonation development. Tested mixtures were ignited by a weak electric spark at one end of the tube. Detonation cell sizes were measured using smoked foil technique and analyzed with Matlab image processing toolbox. As a result of the experiments the deflagration and detonation regimes and velocities of flame propagation in the obstructed tube were determined. ► We studied experimentally flame acceleration and DDT in stoichiometric hydrogen–methane–air mixtures in 6 m long tube with obstacles. ► Detonation cell sizes and pressures were measured. ► Deflagration and detonation regimes and flame velocities were determined.
ISSN:0950-4230
1873-3352
DOI:10.1016/j.jlp.2012.06.004