Author:
Stanoev Evgueni,Kusuma Chandrashekhara Sudhanva
Abstract
Abstract. When simulating a wind turbine, the lowest eigenmodes of the rotor blades are
usually used to describe their elastic deformation in the frame of a
multi-body system. In this paper, a finite element beam model for the rotor
blades is proposed which is based on the transfer matrix method. Both static
and kinetic field matrices for the 3-D Timoshenko beam element are derived by
the numerical integration of the differential equations of motion using a
Runge–Kutta fourth-order procedure. In the general case, the beam reference
axis is at an arbitrary location in the cross section. The inertia term in
the motion differential equation is expressed using appropriate shape
functions for the Timoshenko beam. The kinetic field matrix is built by
numerical integration applied on the approximated inertia term. The beam
element stiffness and mass matrices are calculated by simple matrix
operations from both field matrices. The system stiffness and mass matrices
of the rotor blade model are assembled in the usual finite element manner in
a global coordinate system accounting for the structural twist angle and
possible pre-bending. The program developed for the above-mentioned
calculations and the final solution of the eigenvalue problem is accomplished
using MuPAD, a symbolic math toolbox in
MATLAB®. The natural frequencies calculated
using generic rotor blade data are compared with the results proposed from
the FAST and ADAMS software.
Subject
Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment
Reference15 articles.
1. Andersen, L. and Nielsen, S. R.: Elastic Beams in Three Dimensions,
Department of Civil Engineering, Aalborg University, Aalborg, 2008.
2. Bazoune, A. and Khulief, Y.: Shape Functions of Three-Dimensional Timoshenko
Beam Element, J. Sound Vib., 12, 473–480, 2003.
3. Graf, W. and Vassilev, T.: Einführung in computerorientierte Methoden der
Baustatik, Verlag Ernst&Sohn, Berlin, 2006.
4. Jonkman, J., Butterfield, S., Musial, W., and Scott, G.: Definition of a 5-MW
Reference Wind Turbine for Offshore System Development, Technical Report
NREL/TP-500-38060, National Renewable Energy Laboratory, Colorado, 2009.
5. Jureczko, M., Pawlak, M., and Mezyk, A.: Optimisation of wind turbine blades,
J. Mater. Process. Tech., 463–471, 2005.
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