Simulating the dynamics of wind turbine blades: part I, model development and verification

Author:

Mollineaux Mark G.1,Van Buren Kendra L.2,Hemez François M.3,Atamturktur Sezer2

Affiliation:

1. Department of Civil and Environmental Engineering; Stanford University; 473 Via Ortega, Room 314, Mail Code 4020 Stanford; California; 94305; USA

2. Department of Civil Engineering; Clemson University; Lowry Hall, Box 340911; Clemson; South Carolina; 29634-0911; USA

3. Los Alamos National Laboratory; XTD-Division (XTD-3); Mail Stop T087; Los Alamos; NM; 87545; USA

Publisher

Wiley

Subject

Renewable Energy, Sustainability and the Environment

Reference25 articles.

1. U.S. Department of Energy 20% wind energy by 2030: increasing wind energy's contribution to U.S. electricity supply Report DOE/GO-102008-2567 2008

2. Reliability of Wind Turbines

3. Walford CA Wind turbine reliability: understanding and minimizing wind turbine operation and maintenance costs Sandia Report, SAND2006-1100 2006

4. Ashwill TD Blade technology innovations for utility-scale turbines AWEA Global Windpower 2006

5. Structural health monitoring for a wind turbine system: a review of damage detection methods;Ciang;Measurement Science and Technology,2008

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