This paper presents an optimization method for stall-regulated horizontal-axis wind turbines. A hybrid approach is used that combines the advantages of a genetic algorithm with an inverse design method. This method is used to determine the optimum blade pitch and blade chord and twist distributions that maximize the annual energy production. To illustrate the method, a family of 25 wind turbines was designed to examine the sensitivity of annual energy production to changes in the rotor blade length and peak rotor power. Trends are revealed that should aid in the design of new rotors for existing turbines. In the second application, five wind turbines were designed to determine the benefits of specifically tailoring wind turbine blades for the average wind speed at a particular site. The results have important practical implications related to rotors designed for the Midwestern US versus those where the average wind speed may be greater.
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March 1996
Research Papers
Application of a Genetic Algorithm to Wind Turbine Design
V. L. Coverstone-Carroll
V. L. Coverstone-Carroll
305A Talbot Laboratory
Department of Aeronautical and Astronautical Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801-2935
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M. S. Selig
305 Talbot Laboratory
V. L. Coverstone-Carroll
305A Talbot Laboratory
Department of Aeronautical and Astronautical Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801-2935
J. Energy Resour. Technol. Mar 1996, 118(1): 22-28 (7 pages)
Published Online: March 1, 1996
Article history
Received:
November 28, 1994
Revised:
October 31, 1995
Online:
December 5, 2007
Citation
Selig, M. S., and Coverstone-Carroll, V. L. (March 1, 1996). "Application of a Genetic Algorithm to Wind Turbine Design." ASME. J. Energy Resour. Technol. March 1996; 118(1): 22–28. https://doi.org/10.1115/1.2792688
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