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TECHNICAL PAPERS

Catalytic Combustion of Pre-Vaporized Liquid Fuel

[+] Author and Article Information
Masataka Arai, Kenji Amagai, Toshio Mogi

Department of Mechanical System Engineering, School of Engineering, Gunma University, Gunma, Japan

J. Energy Resour. Technol 123(1), 44-49 (Oct 30, 2000) (6 pages) doi:10.1115/1.1345893 History: Received March 12, 2000; Revised October 30, 2000
Copyright © 2001 by ASME
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References

DeCorso, S. M., Mumford, S., Carrubba, R., and Heck, R., 1976, “Catalysts for Gas Turbine Combustors—Experimental Test Results,” ASME Paper No. 76-GT-4.
Ekstedt, E. E., and Szaniszlo, A. U., 1982, “NASA Clean Catalytic Combustor Program,” ASME Paper No. 82-JPGC-GT-11.
Scheihing,  P. E., Piaia,  T. A., and Pillsbury,  P. W., 1983, “Full Scale Catalytic Burner for Combustion Turbine Tested,” Modern Power Syst., 3, pp. 30–37.
Griffin,  T., Weisenstein,  W., Scherer,  V., and Fowles,  M., 1995, “Palladium-Catalyzed Combustion of Methane: Simulated Gas Turbine Combustion at Atmospheric Pressure,” Combust. Flame, 101, pp. 81–90.
Takeuch, M., and Konno, J., 1997, “Experimental Analysis of C3H8 Catalytic Combustion in a Honeycomb Monolith Pt Catalyst,” Proc. First Asia-Pacific Conference on Combustion, Osaka, Japan, pp. 555–558.

Figures

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Classifications of combustion states—(a) partial reaction in the monolith, (b) homogeneous reaction in the monolith, (c) homogeneous reaction with a parabolic blue flame
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Map of combustion states
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Effect of inlet air temperature on flue gas temperature at outlet of catalyst
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Effect of inlet air temperature on combustion efficiency
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Effect of equivalence ratio on combustion efficiency
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Gas phase temperature distributions in combustion tube
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Photographs of blue flame that appeared on catalyst
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Effect of inlet air temperature on blue flame height
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Effect of inlet air temperature on ignition delay
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Optical system for spectral measurement and measurement positions
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Spontaneous emission spectrum of blue flame
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Spontaneous emission spectrum of propane premixed flame

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