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Original Articles

EFFECTS OF BUOYANCY ON TRANSITIONAL HYDROGEN GAS-JET DIFFUSION FLAMES

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Pages 305-322 | Received 06 Oct 2003, Accepted 06 Aug 2004, Published online: 30 Aug 2006

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Victor V. Kozlov, Valentin V. Vikhorev, GenrichR. Grek, Yury A. Litvinenko & Andrey G. Shmakov. (2019) Diffusion Combustion of a Hydrogen Microjet at Variations of its Velocity Profile and Orientation of the Nozzle in the Field of Gravitation. Combustion Science and Technology 191:7, pages 1219-1235.
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Articles from other publishers (6)

A. V. Dovgal, V. V. Kozlov, M. V. Litvinenko, Yu. A. Litvinenko & A. G. Shmakov. (2023) REGIMES OF COMBUSTION OF HYDROGEN MICROJETS. Journal of Applied Mechanics and Technical Physics 64:1, pages 1-9.
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V.V. Kozlov, G.R. Grek, G.V. Kozlov, Yu.A. Litvinenko & A.G. Shmakov. (2019) Experimental study on diffusion combustion of high-speed hydrogen round microjets. International Journal of Hydrogen Energy 44:1, pages 457-468.
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Dan LI & Shuangfeng WANG. (2018) Experimental Study of Buoyancy Effect on Transitional Jet Diffusion Flames ormalsize. Chinese Journal of Space Science 38:2, pages 227.
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V. V. Kozlov, G. R. Grek, O. P. Korobeinichev, Yu. A. Litvinenko & A. G. Shmakov. (2016) Combustion of a high-velocity hydrogen microjet effluxing in air. Doklady Physics 61:9, pages 457-462.
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P. S. Kolhe & A. K. Agrawal. (2007) Role of Buoyancy on Instabilities and Structure of Transitional Gas Jet Diffusion Flames. Flow, Turbulence and Combustion 79:4, pages 343-360.
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N Fujisawa & K Nakashima. (2007) Simultaneous measurement of three-dimensional flame contour and velocity field for characterizing the flickering motion of a dilute hydrogen flame. Measurement Science and Technology 18:7, pages 2103-2110.
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