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As shown in Figure 61, Engineous is a user-friendly generic software shell that automatically iterates design programs until constraints and design goals are met. It captures human design knowl29 GER-3713E GT25810 Figure 63. TADS/Engineous screen tions (Reference 26), GE Power Generation and CRD developed an automated workstation-based system that uses Engineous to optimize threedimensional blade profiles to maximize efficiency while meeting all mechanical design requirements. The system was created by coupling Engineous to Bezblade, a 2D flow solver, a knowledge base containing aerodynamic and mechanical design rules and constraints, and a number of other blade design utilities.

Rai, M. , “Multi-Airfoil Navier-Stokes Simulations of Turbine RotorStator Interaction,” Jour nal of Turbomachinery, Vol. 112, July, 1990, pp. 377-384. A. , “Simulation of ThreeDimensional Viscous Flow Within a Multistage Turbine,” ASME Paper 89-GT152, 1989. , “Method of Raising the Efficiency of Turbine Stages with Short Blades,” Teploenergetika, February, 1960, pp. 18-24. E. , “Redesigned 26-Inch Last Stage for Improved Turbine Reliability and Efficiency,” ASME Paper No. 84-JPGC-GT17, 1984. (Also published as GE Power Generation Turbine Technology Reference Library Paper No.

24. 25. Knowledge-Based Systems in Aerospace and Industr y, April 13-15, 1993, Orlando, Florida. 26. A. , “Optimization of a Transonic Turbine Airfoil Using Artificial Intelligence, CFD and Cascade Testing,” ASME Paper 93-GT161, 1993. 27. , Singh, H. , “Turbine Airfoil Design Optimization,” ASME Paper 96-GT-158, 1996, presented at the ASME Turbo Expo ‘96 conference in Birmingham, UK, June 11, 1996. Turbine Technology Reference Librar y Paper No. GER-3590, 1988. , “High-Power-Density™ Steam Turbine Design Evolution,” GE Power Generation Turbine Technology Reference Library Paper No.

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Advances in Steam Path Technology

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