TECHNICAL PAPERS: Gas Turbines: Combustion and Fuel

9 ppm NOx/CO Combustion System for “F” Class Industrial Gas Turbines

[+] Author and Article Information
C. L. Vandervort

Manager—Generator DFSS Machine Design, GE Power Systems, 1 River Road, Schenectady, NY 12345e-mail: christian.vandervort@ps.ge.com

J. Eng. Gas Turbines Power 123(2), 317-321 (Jan 01, 2001) (5 pages) doi:10.1115/1.1362661 History: Received February 01, 2000; Revised January 01, 2001
Copyright © 2001 by ASME
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Washam, R. M., 1983, “Dry Low NOx Combustion System for Utility Gas Turbine,” ASME Paper 83-JPGC-GT-13.
Davis, L. B., and Washam, R. M., 1989, “Development of a Dry Low NOx Combustor,” ASME Paper No. 89-GT-255.
Davis, L. B., 1997, “Dry Low NOx Combustion System for GE Heavy-Duty Gas Turbines,” GE Power Systems Reference GER-3568F.
Zeldovich,  J., 1946, “The Oxidation of Nitrogen in Combustion and Explosions,” Acta Physicochim. URSS, 21, No. 4, pp. 577–628.
Ritter, A. M., et al., 1998, “Combustor for a Gas Turbine with Cooling Structure,” United States Patent Number 5,724,186, March 10.
Hoeft, R. F., and Gebhardt, E., 1998, “Heavy-Duty Gas Turbine Operating and Maintenance Considerations,” GE Power Systems Reference GER-3620F.


Grahic Jump Location
DLN-2.6 fuel nozzle arrangement
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DLN-2.6 outer fuel nozzle cut-away diagram
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DLN-2.6 fuel distribution and controls system
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DLN-2.6 ignition, cross-fire, acceleration, and loading strategy
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DLN-2.6 unloading and fired shutdown sequence
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DLN-2.6 loading transient from FSNL to base load
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NOx at 15 percent O2 versus percent load
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CO levels versus percent load
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Base load equivalent emission performance on distillate fuel with water injection
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Base load emission performance with steam injection for power augmentation on natural gas



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