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Hazard evaluation of hydrogen–air deflagration with flame propagation velocity measurement by image velocimetry using brightness subtraction
Authors:Teruhito Otsuka   Hiroyasu Saitoh   Takaaki Mizutani   Kaoru Morimoto  Norihiko Yoshikawa
Affiliation:

aNational Institute of Occupational Safety and Health (JNIOSH), 1-4-6 Umezono, Kiyose, Tokyo 204-0024, Japan

bDepartment of Micro-nano Systems Engineering, Graduate School of Engineering, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, Aichi 464-8603, Japan

Abstract:Deflagration phenomena in hydrogen–air mixtures initially filled in 1.4 m3 spherical latex balloons were measured using a high-speed digital video camera and pressure transducers. The image velocimetry using brightness subtraction was introduced to eliminate the background effects for obtaining accurate time evolution records of flame propagation velocity. The maximum flame propagation velocity of about 100 m/s was observed with maximum overpressure 15 kPa at 1 m from ignition point. According to the detailed flame propagation velocity records, there were long deceleration durations. The observed maximum overpressure was smaller than the overpressure estimated by the basis of the observed maximum flame propagation velocity and the pressure wave theories of spherical flames. A new blast curve plot of scaled overpressure vs. distance was tentatively proposed.
Keywords:Hydrogen   Deflagration   Scaling law   Blast curve   Image velocimetry
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