ADVANCED MICROTURBINE SYSTEMS Final Report for Tasks 1 Through 4 and Task 6

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ADVANCED MICROTURBINE SYSTEMS Final Report for Tasks 1 Through 4 and Task 6 ( advanced-microturbine-systems-final-report-tasks-1-through-4 )

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Joe Shaw and Bob Draper. Thanks are due to other United Technologies Research Center personnel Greg Ojard, Shanti Nair (University of Massachusetts), Bill Tredway, Thomas Lawton, Mark Hermann, Steve Gore, Bob Barth, Roy Wong, Bob Brown, Chuck Burila, Bruce Laube. The authors also thank collaborators Jeff Price, Josh Kimmel, Mark Van Roode, and Oscar Jimenez at Solar Turbines Inc.; Karren More, Peter Tortorelli, Matt Ferber and H.T.Lin at Oak Ridge National Laboratory. REFERENCES 1. Opila, E.J., and Hann R.E. Jr, 1997, “Paralinear Oxidation of CVD SiC in Water Vapor”, J. Am. Ceram. Soc., 80 (1), pp. 197-205. 2. Opila, E.J., Fox, D.S., and Jacobson, N.S., 1997, “Mass Spectrometric Identification of Si-O- OH(g) Species from the Reaction of Silica with Water Vapor at Atmospheric Pressure”, J. Am. Ceram. Soc., 80 (4), pp. 1009-12 3. Opila E.J., Smialek, J.L., Robinson, R.C., Fox, D.S., and Jacobson, N.S., 1999, “SiC Recession Caused by SiO2 Scale Volatility under Combustion Conditions: II, Thermodynamcis and Gaseous-Diffusion Model”, J. Am. Ceram. Soc., 82 (7), pp. 1826-34. 4. Robinson, R.C., and Smialek, J.L., 1999, “SiC Recession Caused by SiO2 Scale Volatility under Combustion Conditions: I, Experimental Results and Empirical Model”, J. Am. Ceram. Soc., 82 (7), pp. 1817-25. 5. Smialek, J.L., Robinson, R.C., Opila, E.J., Fox, D.S., and Jacobson, N.S., 1999, “SiC and Si3N4 Recession Due to SiO2 Scale Volatility Under Combustor Conditions”, Adv. Composite Mater., 8, 1, pp.33-45. 6. Eaton, H.E., Linsey, G.D., More, K.L., Kimmel, J.B., Price, J.R., and Miriyala, N., 2000, “EBC Protection of SiC/SiC Composites in the Gas 7. 8. 9. 10. 11. 12. 13. Turbine Combustion Environment”, ASME Paper GT-2000-631. Eaton, H.E., and Linsey, G.D.; 2002, “Accelerated oxidation of SiC CMC’s by Water Vapor and Protection via Environmental Barrier Coating Approach”, J. Eur. Ceram. Soc, 22, pp 2741-2747. More, K.L., Tortorelli, P.F., Walker, L.R., Kimmel, J.B., Miriyala, N., Price, J.R., Eaton, H.E., Sun, E.Y., and Linsey, G.D., 2002, “Evaluating Environmental Barrier Coatings on Ceramic Matrix Composites after Engine and Laboratory Exposures”, ASME Paper GT-2002- 30630. Miriyala, N., Kimmel, J., Price, J., More, K., Tortorelli, P., Eaton, H., Linsey, G., and Sun, E., 2002, “The Evaluation of CFCC Liners After Field Testing in a Gas Turbine –III”, ASME Paper GT-2002-30585. Sun, E., Eaton, H., Holowczak, J., and Linsey, G., 2002, “Development and Evaluation of Environmental Barrier Coatings for Silicon Nitride”, ASME Paper GT-2002-30628. More, K.L., Tortorelli, P.F., and Walker, L.R., “Verification of an EBC’s Protective Capability by First-Stage Evaluation in a High Temperature, High-Pressure Furnace”, ASME Paper GT-2003- 38923. More, K.L., Tortorelli, P.F., Ferber, M.K., Walker, L.R., Keiser, J.P., Brentnall, W.B., Miralya, N., and Price, J.B., 1999, “Exposure of Ceramics and Ceramic Matrix Composites in Simulated and Actual Combustor Environments”, ASME Paper 99-GT-292. vanRoode, M., Price, J.R., Richerson, D.W., Parthasarathy, V., and Graves, G.A.; 2001, “Ceramic Stationary Gas Turbine Program - 142 Copyright © 2004 by ASME

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