Dynamic behavior and flame acceleration of spherically expanding hydrogen flames under the low-pressure conditions
Author:
Affiliation:
1. Department of Mechanical Engineering, Nagaoka University of Technology
2. Department of System Safety Engineering, Nagaoka University of Technology
Publisher
Japan Society of Mechanical Engineers
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/transjsme/89/918/89_22-00285/_pdf
Reference22 articles.
1. Aung, K. T., Hassan, M. I. and Faeth, G. M., Effects of pressure and nitrogen dilution on flame/stretch interaction of laminar premixed H2/O2/N2 flames, Combustion and Flame 1998), Volume 112, pp. 1–15.
2. Boris, E. G, Mikhail, E. S, Sergey, P. M and Sergey, V. K, Thermo-Gas Dynamics of Hydrogen Combustion and Explosion (2012), Springer-Verlag Berlin Heidelberg.
3. Bradley, D., Hicks, R. A., Lawes, M., Sheppard, C. G. W. and Woolley, R., The Measurement of laminar burning velocities and Markstein numbers for iso-octane–air and iso-octane–n-heptane–air mixtures at elevated temperatures and pressures in an explosion bomb, Combustion and Flame (1998), Volume 115, Issues 1–2, pp. 126-144.
4. Bradley, D., Lawes, M., Liu, K., Verhelst, S. and Woolley, R., Laminar burning velocities of lean hydrogen–air mixtures at pressures up to 1.0 MPa, Combustion and Flame (2007), Volume 149, Issues 1–2, pp. 162–172.
5. Cabinet Secretariat, hydrogen basic strategy (2017), available from <https://www.cas.go.jp/jp/seisaku/saisei_energy/pdf/hydrogen_basic_strategy.pdf>, (accessed on 23 November, 2022).
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