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Article
3D simulation of wind turbine rotors at full scale. Part II: Fluid–structure interaction modeling with composite blades
International Journal for Numerical Methods in Fluids (2011)
  • Y. Bazilevs, University of California, San Diego
  • Ming-Chen Hsu, University of California, San Diego
  • J. Kiendel
  • R. Wuchner
  • K. U. Bletzigner
Abstract

In this two-part paper, we present a collection of numerical methods combined into a single framework, which has the potential for a successful application to wind turbine rotor modeling and simulation. In Part 1 of this paper we focus on: 1. The basics of geometry modeling and analysis-suitable geometry construction for wind turbine rotors; 2. The fluid mechanics formulation and its suitability and accuracy for rotating turbulent flows; 3. The coupling of air flow and a rotating rigid body. In Part 2, we focus on the structural discretization for wind turbine blades and the details of the fluid–structure interaction computational procedures. The methods developed are applied to the simulation of the NREL 5MW offshore baseline wind turbine rotor. The simulations are performed at realistic wind velocity and rotor speed conditions and at full spatial scale. Validation against published data is presented and possibilities of the newly developed computational framework are illustrated on several examples.

Keywords
  • wind turbine rotor,
  • wind turbine blade,
  • fluid-structure interaction,
  • Kirchoff-Love shells,
  • composite materials,
  • isogeometric analysis,
  • NURBS,
  • aerodynamic torque
Publication Date
October, 2011
Publisher Statement
This is the peer reviewed version of the following article: International Journal for Numerical Methods in Fluids 65 (2011) 236, which has been published in final form at http://dx.doi.org/10.1002/fld.2454. This article may be used for non-commercial purposes in accordance With Wiley Terms and Conditions for self-archiving.
Citation Information
Y. Bazilevs, Ming-Chen Hsu, J. Kiendel, R. Wuchner, et al.. "3D simulation of wind turbine rotors at full scale. Part II: Fluid–structure interaction modeling with composite blades" International Journal for Numerical Methods in Fluids Vol. 65 Iss. 1-3 (2011)
Available at: http://works.bepress.com/ming-chen_hsu/9/