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Analytical Method to Determine a Tip Loss Factor for Highly-Loaded Wind Turbines.

Conference ·
DOI:https://doi.org/10.2514/6.2016-0752· OSTI ID:1338878

Abstract not provided.

Research Organization:
Sandia National Laboratories (SNL-NM), Albuquerque, NM (United States)
Sponsoring Organization:
USDOE National Nuclear Security Administration (NNSA)
DOE Contract Number:
AC04-94AL85000
OSTI ID:
1338878
Report Number(s):
SAND2016-0053C; 617550
Country of Publication:
United States
Language:
English

References (14)

On the Vortex Theory of Screw Propellers journal April 1929
The Nebulous Art of Using Wind-Tunnel Airfoil Data for Predicting Rotor Performance conference February 2009
Airplane Propellers book January 1935
Development of new tip-loss corrections based on vortex theory and vortex methods journal December 2014
Peak and Post-Peak Power Aerodynamics from Phase VI NASA Ames Wind Turbine Data journal April 2005
Winglet Design for Wind Turbines Using a Free-Wake Vortex Analysis Method conference November 2012
Insight into wind turbine stall and post-stall aerodynamics journal July 2004
Performance and near wake measurements of a model horizontal axis wind turbine: Performance and near wake measurements of a model turbine journal September 2011
Wind Turbine Post-Stall Airfoil Performance Characteristics Guidelines for Blade-Element Momentum Methods conference June 2012
Vortex methods to answer the need for improved understanding and modelling of tip-loss factors journal July 2013
Tip loss corrections for wind turbine computations journal January 2005
Wind Energy Handbook book September 2001
Relaxed-Wake Vortex-Lattice Method Using Distributed Vorticity Elements journal March 2008
AeroDyn Theory Manual report January 2005

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