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3
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0000250988
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Effects of fuel property on the structure of highly preheated air flames
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Nov. 2-5, Denver, CO
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Effect of air preheat and oxygen concentration on flame structure and emissions
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Experimental and theoretical analysis results for high temperature air combustion
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ASME, New York, ASME FACT
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Tanigawa, T., et al., 1998, "Experimental and Theoretical Analysis Results for High Temperature Air Combustion," Proc. Intl. Joint Power Generation Conference, 1, ASME, New York, ASME FACT-Vol. 22, pp. 207-214.
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ASME, New York, ASME FACT
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Taniguchi, H., et al., 1998, "Heat Transfer Analysis for High Temperature Preheated Air Combustion in Furnace," Proc. Intl. Joint Power Generation Conference, 1, ASME, New York, ASME FACT-Vol. 22, pp. 215-225.
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ASME. New York, ASME FACT
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Kitagawa, K., et al., 1998, "Two-Dimensional Distribution of Flame Fluctuation During Highly Preheated Air Combustion," Proc. Intl. Joint Power Generation Conference, 1, ASME. New York, ASME FACT-Vol. 22, pp. 239-242.
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Jan. 17-18, Stockholm, Sweden
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(2000)
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Gupta, A.K.1
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11
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0006163346
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High temperature gassification of coal, biomass, and solid wastes
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Jan. 17-18, Stockholm, Sweden
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Yoshikawa, K., 2000, "High Temperature Gassification of Coal, Biomass, and Solid Wastes," Proc. 2nd Intl. Seminar on High Temperature Air Combustion, Jan. 17-18, Stockholm, Sweden.
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12
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Fundamental research of oil combustion with highly preheated air
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Jan. 17-18, Stockholm, Sweden
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13
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0033353468
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2, CO and NO, emissions
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UK, Sept.
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2, CO and NO, Emissions," J. of the Institute of Energy, UK, Sept. pp. 77-83.
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Weber, R.1
Verlann, A.L.2
Orsino, S.3
Lallemant, N.4
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16
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0004239960
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Abacus Press, Tunbridge Wells, Kent, England
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Gupta, A. K., Lilley, D. G., and Syred, N., 1984, Swirl Flows, Abacus Press, Tunbridge Wells, Kent, England.
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Swirl Flows
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17
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0033297544
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Highly preheated air combustion characteristics and development of a combustion diagnostic on advanced industrial furnace making
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San Francisco, CA, July 25-28, 1999, ASME, New York, ASME FACT
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Hasegawa, T., and Mochida, S.; 1999, "Highly Preheated Air Combustion Characteristics and Development of a Combustion Diagnostic on Advanced Industrial Furnace Making," Proc. Intl. Joint Power Generation Conference, San Francisco, CA, July 25-28, 1999, 1, ASME, New York, ASME FACT-Vol. 23, pp. 457-466.
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Research of high temperature air combustion fired heavy oil
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Jan. 17-18, Stockholm, Sweden
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Heat transfer improvement and NO, reduction in an industrial furnace by regenerative combustion system
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paper presented at the Osaka, Japan
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Hasegawa, T. and Tanaka, R.; 1997, "Combustion with High Temperature Low Oxygen Air in Regenerative Burners," paper presented at the 1997 ASPACC, Osaka, Japan.
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1997 ASPACC
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Hasegawa, T.1
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21
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0032286996
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The Combustion Institute, Pittsburgh, PA
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Katsuki, M., and Hasegawa, T., 1999, "The Science and Technology of Combustion in Highly Preheated Air," Proc. 27th Symposium (Intl.) on Combustion, The Combustion Institute, Pittsburgh, PA, pp. 3135-3146.
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Air preheat and oxygen concentration effects on the thermal behavior of propane and methane diffusion flames
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Gupta, A. K., and Hasegawa, T.; 1999, "Air Preheat and Oxygen Concentration Effects on the Thermal Behavior of Propane and Methane Diffusion Flames," Proc. High Temperature Air Combustion Symposium, Jan. 20-22, Kaohsiung, Taiwan.
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Homogenization and stabilization during combustion of hydrocarbons with preheated air
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The Combustion Institute, Pittsburgh, PA
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Ishiguro, T., Tsuge, S., Furuhata, T., Kitagawa, K., Arai, N., Hasegawa, T., Tanaka, R., and Gupta, A. K., 1999, "Homogenization and Stabilization During Combustion of Hydrocarbons With Preheated Air," Proc. 27 th Symposium (Intl.) on Combustion, The Combustion Institute, Pittsburgh, PA. pp. 3205-3213.
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Two-dimensional distribution of flame fluctuation during highly preheated air combustion
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ASME, New York, ASME FACT
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Kitagawa, K., Konishi, N., Arai, N., and Gupta, A. K., 1998, "Two-Dimensional Distribution of Flame Fluctuation During Highly Preheated Air Combustion," Proc. ASME Intl. Joint Power Generation Conference (IJPGC). ASME, New York, ASME FACT-Vol. 22, pp. 239-242.
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26
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Flame length and ignition delay during the combustion of acetylene in high temperature air
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invited paper, Oct. 28-31, Yokohama, Japan
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Gupta, A. K., 2002, "Flame Length and Ignition Delay During the Combustion of Acetylene in High Temperature Air," invited paper, Proc. 5th High Temperature Air Combustion and Gasification (5th HTACG), Oct. 28-31, Yokohama, Japan.
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27
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Two-dimensional spectroscopic analysis of spontaneous emission from a flame using highly preheated air combustion
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Konishi, N., Kitagawa, K., Arai, N., and Gupta, A. K., 2002, "Two-Dimensional Spectroscopic Analysis of Spontaneous Emission From a Flame Using Highly Preheated Air Combustion," J. Propul. Power, 18, pp. 199-204.
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J. Propul. Power
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Hasegawa, T., Mochida, S., and Gupta, A. K., 2002, "Development of Advanced Industrial Furnace Using Highly Preheated Combustion Air," J. Propul. Power, 18, pp. 233-239.
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J. Propul. Power
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Kitagawa, K., Konishi, N., Arai, N., and Gupta, A. K., 2003, "Temporally Resolved 2-D Spcctroscopic Study on the Effect of Highly Preheated and Low Oxygen Concentration Air on Combustion," ASME J. Eng. Gas Turbines Power, 125, pp. 326-331.
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ASME J. Eng. Gas Turbines Power
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