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Development and validation of an aeroelastic model of a small furling wind turbine : preprint

Author: J M Jonkman; A C Hansen; National Renewable Energy Laboratory (U.S.)
Publisher: Golden, Colo. : National Renewable Energy Laboratory, 2004.
Series: Conference paper (National Renewable Energy Laboratory (U.S.)), NREL/CP-500-39589.
Edition/Format:   eBook : Document : National government publication : English
Summary:
Small wind turbines often use some form of furling (yawing and/or tilting out of the wind) to protect against excessive power generation and rotor speeds in high winds. The verification study demonstrated the correct implementation of FAST's furling dynamics. During validation, the model tends to predict mean rotor speeds higher than measured in spite of the fact that the mean furl motion and rotor thrust are  Read more...
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Details

Material Type: Document, Government publication, National government publication, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: J M Jonkman; A C Hansen; National Renewable Energy Laboratory (U.S.)
OCLC Number: 171290383
Notes: Title from PDF title page (viewed on Sept. 14, 2007).
"December 2004."
"To be presented at the 43rd AIAA Aerospace Sciences meeting and expendition, Reno, Nevada, January 10-13, 2005."
Description: 11 pages : digital, PDF file.
Details: System requirements: PDF reader.; Mode of access: Internet from the NREL web site. Address as of 9/14/07: http://www.nrel.gov/docs/fy05osti/39589.pdf; current access available via PURL.
Series Title: Conference paper (National Renewable Energy Laboratory (U.S.)), NREL/CP-500-39589.
Responsibility: J.M. Jonkman, A. Craig Hansen.

Abstract:

Small wind turbines often use some form of furling (yawing and/or tilting out of the wind) to protect against excessive power generation and rotor speeds in high winds. The verification study demonstrated the correct implementation of FAST's furling dynamics. During validation, the model tends to predict mean rotor speeds higher than measured in spite of the fact that the mean furl motion and rotor thrust are predicted quite accurately. This work has culminated with an enhanced version of FAST that should prove to be a valuable asset to designers of small wind turbines.

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