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Original Articles

Autoignition of a Turbulent Premixed Gas

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Pages 1-13 | Received 27 May 1991, Accepted 16 Dec 1991, Published online: 06 Apr 2007

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Read on this site (1)

T. HASEGAWA, K. NISHIKADO & J. CHOMIAK. (1995) Flame Propagation Along a Fine Vortex Tube. Combustion Science and Technology 108:1-3, pages 67-80.
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Articles from other publishers (8)

S. Sreedhara. (2023) Development of 3-D Computer Code to Study Autoignition in a Turbulent Medium. Journal of Aerospace Sciences and Technologies, pages 158-165.
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Cheng Chi, Abouelmagd Abdelsamie & Dominique Thévenin. (2018) Direct Numerical Simulations of Hotspot-induced Ignition in Homogeneous Hydrogen-air Pre-mixtures and Ignition Spot Tracking. Flow, Turbulence and Combustion 101:1, pages 103-121.
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Abouelmagd Abdelsamie, David O. Lignell & Dominique Thévenin. (2017) Comparison Between ODT and DNS for Ignition Occurrence in Turbulent Premixed Jet Combustion: Safety-Relevant Applications. Zeitschrift für Physikalische Chemie 231:10, pages 1709-1735.
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Michael J. Papageorge, Christoph Arndt, Frederik Fuest, Wolfgang Meier & Jeffrey A. Sutton. (2014) High-speed mixture fraction and temperature imaging of pulsed, turbulent fuel jets auto-igniting in high-temperature, vitiated co-flows. Experiments in Fluids 55:7.
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Epaminondas Mastorakos. (2009) Ignition of turbulent non-premixed flames. Progress in Energy and Combustion Science 35:1, pages 57-97.
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S. Sreedhara & K.N. Lakshmisha. (2000) Direct numerical simulation of autoignition in a non-premixed, turbulent medium. Proceedings of the Combustion Institute 28:1, pages 25-33.
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Wang Jianping & Tatsuya Hasegawa. (1998) Numerical simulation on compressible turbulence by spectral method. Acta Mechanica Sinica 14:3, pages 193-207.
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Tatsuya Hasegawa & Kauki Nishikado. (1996) Effect of density ratio on flame propagation along a vortex tube. Symposium (International) on Combustion 26:1, pages 291-297.
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