Design space exploration and decision‐making for a segmented ultralight morphing 50‐MW wind turbine

Author:

Kianbakht Sepideh1ORCID,Martin Dana1,Johnson Kathryn1,Zalkind Daniel2ORCID,Pao Lucy2,Loth Eric3,Simpson Juliet3ORCID,Yao Shulong4ORCID,Chetan Mayank4ORCID,Griffith D. Todd4ORCID

Affiliation:

1. Electrical Engineering Colorado School of Mines Golden CO USA

2. Electrical, Computer, and Energy Engineering University of Colorado Boulder|Renewable and Sustainable Energy Institute Boulder CO USA

3. Mechanical and Aerospace Engineering University of Virginia Charlottesville VA USA

4. Mechanical Engineering|UTD Center for Wind Energy University of Texas at Dallas Dallas TX USA

Funder

Advanced Research Projects Agency - Energy

Publisher

Wiley

Subject

Renewable Energy, Sustainability and the Environment

Reference49 articles.

1. Multidisciplinary dynamic optimization of horizontal axis wind turbine design

2. Simultaneous structural and control system design for horizontal axis wind turbines;Deshmukh AP;American Institute of Aeronautics and Astronautics,2015

3. Downwind pre-aligned rotors for extreme-scale wind turbines

4. A morphing downwind‐aligned rotor concept based on a 13‐MW wind turbine;Steele BIA;Wind Energy,2015

5. Aeroservoelastic design definition of a 20 MW common research wind turbine model

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