STEAM INJECTION SYSTEM ON AN EARLY FRAME 3 GAS TURBINE IN A COMBINED CYCLE PIPELINE COMPRESSOR STATION

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STEAM INJECTION SYSTEM ON AN EARLY FRAME 3 GAS TURBINE IN A COMBINED CYCLE PIPELINE COMPRESSOR STATION ( steam-injection-system-on-an-early-frame-3-gas-turbine-in-co )

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150 PROCEEDINGS OF THE TWENTY-FIRST TURBOMACHINERY SYMPOSIUM 7. Heard, T. C., "Reduction of Gas Turbine Fuel Consumption on Gas Pipelines," ASME Paper No. 76-GT-180 (1976). 8. Touchon,G.L.,"AnExperimentallyVerifiedNOxPrediction Algorithm Incorporating the Effects of Steam Injection," Journal for Engineering for Gas Turbines and Power, 106, pp. 833-840 (October 1984). 9. Touchon, G. L., "Influence of Gas Turbine Combustor Design and Operating Parameters on Effectiveness of NOx Suppres­ sion by Injected Steam or Water," Journal of Engineering for Gas Turbines and Power, 107, pp. 706-713 (July 1985). 10. Hilt, M. B. and Waslo, J., "Evolution of NOx Abatement Techniques through Combustor Design for Heavy Duty Gas Turbines," Journal of Engineering for Gas Turbines and Power, 106, pp. 825-832 (October 1984). 11. Masserlie, R. L. and Tischler, A. 0, "Test Results of a Steam Injected Gas Turbine to Increase Power and Thermal Effi­ ciency," 18th Intersociety Energy Conversion Engg. Confer­ ence (1983). 12. Larson, E. D. and Williams, R. H., "Steam Injected Gas Turbines," Journal of Engineering for Gas Turbines and Power, 109, pp. 55-62 (January 1987). 13. Kaempffer, L. and Williams K., "Steam Injecting a Mature Gas Turbine in a Modern Cogeneration Plant," ASME Paper No. 89-GT-167 (1989). 14. Little, D. A. and Rives, J.P., "SteamInjection of Frame 5 Gas Turbines for Power Augmentation in Cogeneration Service," ASME Paper 88-GT-51 (1988). 15. Irwin Stambler, "SCR Experience in U.S. Showing Better Than Expected Performance," Gas Turbine World, pp. 16-21 (March-Apri1 1990). 16. Ecob, D. J. and Marriott, D. G., "Development of Steam Injection for Ruston TB 5000 and Tornado Engines," ASME Paper 89-GT-253 (1989). 17. McGreeham, W. F., Schtsch, M. J., "Flow Characteristics of Long Orifices with Rotation and Corner Radiusing," ASME Paper 87-GT-162 (1987). 18. Abuaf, N., Rasmussen, N. S., and Sazema, L. C., "Flow in Liner Holes for Countercurrent Combustion Systems," ASME Paper 88-GT-158 (1988). 19. Cameron, C. D., et al., "A Detailed Characterization of the Velocity and Thermal Fields in a Model Can Combustor with Wall Jet Injection," ASME Paper 88-GT-26 (1988). 20. Ericksen, V. L., Goldstein, R. J., "Heat Transfer and Film Cooling Following Normal Injection Through a Round Hole," ASME Paper 74- GT-6 (1974). 21. Carrote, J. F. and Stevens, S. J., "The Influence of Dilution Hole Geometry on Jet Mixing," ASME Paper 89-GT-292 (1989). ACKNOWLEDGEMENTS The authors wish to thank the Transcontinental Gas Pipe Line Corporation for their permission to publish this material. Special contributions of Mack Tillery, Timothy (Butch) Scherrer, and Craig Linn of the Billingsley, Alabama, Compressor Station are gratefully acknowledged. They helped us immensely in numerous facetsof this project. Thanks are also due to Ed Culpeper, Pat Nolan, and Pat Bagley of Unitech Development Corporation. They helped us interface the steam injection control system with the Digicon turbine control system. Contributions of Dr. Ted Chase of Elliott Company (currently with Hickham Industries) in evaluat­ ing and upgrading the gas turbine parts is also appreciated.

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