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  1. Journal of Mechanical Science and Technology
  2. Journal of Mechanical Science and Technology : Volume 25
  3. Journal of Mechanical Science and Technology : Volume 25, Issue 1, January 2011
  4. Aerodynamic response analysis of wind turbines
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Journal of Mechanical Science and Technology : Volume 31
Journal of Mechanical Science and Technology : Volume 30
Journal of Mechanical Science and Technology : Volume 29
Journal of Mechanical Science and Technology : Volume 28
Journal of Mechanical Science and Technology : Volume 27
Journal of Mechanical Science and Technology : Volume 26
Journal of Mechanical Science and Technology : Volume 25
Journal of Mechanical Science and Technology : Volume 25, Issue 12, December 2011
Journal of Mechanical Science and Technology : Volume 25, Issue 1, Supplement,December 2011
Journal of Mechanical Science and Technology : Volume 25, Issue 11, November 2011
Journal of Mechanical Science and Technology : Volume 25, Issue 10, October 2011
Journal of Mechanical Science and Technology : Volume 25, Issue 9, September 2011
Journal of Mechanical Science and Technology : Volume 25, Issue 8, August 2011
Journal of Mechanical Science and Technology : Volume 25, Issue 7, July 2011
Journal of Mechanical Science and Technology : Volume 25, Issue 6, June 2011
Journal of Mechanical Science and Technology : Volume 25, Issue 5, May 2011
Journal of Mechanical Science and Technology : Volume 25, Issue 4, April 2011
Journal of Mechanical Science and Technology : Volume 25, Issue 3, March 2011
Journal of Mechanical Science and Technology : Volume 25, Issue 2, February 2011
Journal of Mechanical Science and Technology : Volume 25, Issue 1, January 2011
Numerical study of power generation by reverse electrodialysis in ion-selective nanochannels
Synthesis of single-walled carbon nanotubes using laser-vaporized metal nanoparticle catalyst
Efficient white organic light-emitting diodes with mixed electron transporting layers
DSMC scheme to study phonon dynamics
Thermal rectification of asymmetrically-defective materials
Process optimization of preparing honeycomb-patterned polystyrene films by breath figure method
Effect of liquid bulk density on thermal resistance at a liquid-solid interface
Fabrication of semi-transparent super-hydrophobic surface based on silica hierarchical structures
Synchronization of two non-identical coupled exciters in a non-resonant vibrating system of plane motion
Comparison of collocation strategies of sensor and actuator for vibration control
Free and forced vibration analysis of FG beam considering temperature dependency of material properties
Local stiffness control for reducing vehicle interior noise by using FRF-based synthesis method
Aerodynamic response analysis of wind turbines
Dynamic modeling and simulation of electrodynamic tether system in stationkeeping phase
Prediction of transient lubricating oil flows within the connecting-rod of a diesel engine
Stability analysis of wakes with density gradient
Multi-scale filling simulation of micro-injection molding process
Response characteristics of a vortex-excited circular cylinder in laminar flow
An experimental apparatus measuring convective heat transfer coefficient from a heated fine wire traversing in nanofluids
High-temperature dynamic deformation of aluminum alloys using SHPB
Shape design of a tire contour based on approximation model
A proper orthogonal decomposition for parametric study of the mechanical behavior of nanowires
Averaging effects of a strain gage
A design of speed reducer with trapezoidal tooth profile for robot manipulator
Improving profile accuracy in SPIF process through statistical optimization of forming parameters
Optimal operation strategy development for fuel cell hybrid vehicle
Application of thermosyphon air-preheater for energy thrift from a furnace in a hot forging process
Variable fuzzy control for heat pump operation
Determination of the optical depth of a DI diesel spray
Robust control application for a three-axis road simulator
On the stability of receding horizon control based on horizon size for linear discrete systems
Driving an AMB system using a 2D space vector modulation of three-leg voltage source converters
Self-learning navigation algorithm for vision-based mobile robots using machine learning algorithms
Derivation and isomorphism identification of valid topological graphs for 1-, 2-DOF planar closed mechanisms by characteristic strings
Journal of Mechanical Science and Technology : Volume 24
Journal of Mechanical Science and Technology : Volume 23
Journal of Mechanical Science and Technology : Volume 22
Journal of Mechanical Science and Technology : Volume 21
Journal of Mechanical Science and Technology : Volume 20
Journal of Mechanical Science and Technology : Volume 19
Journal of Mechanical Science and Technology : Volume 18
Journal of Mechanical Science and Technology : Volume 17
Journal of Mechanical Science and Technology : Volume 16
Journal of Mechanical Science and Technology : Volume 15
Journal of Mechanical Science and Technology : Volume 14
Journal of Mechanical Science and Technology : Volume 13
Journal of Mechanical Science and Technology : Volume 12
Journal of Mechanical Science and Technology : Volume 11

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Aerodynamic response analysis of wind turbines

Content Provider SpringerLink
Author Li, Jing Chen, Jianyun Chen, Xiaobo
Copyright Year 2011
Abstract Wind energy has received increasing attention in the same way as energy crisis and environmental deterioration. The aerodynamic response of wind turbines is the major problem in wind turbine design. Blade element momentum theory was used to study the aerodynamic thrusts of the blades on the tower. Iterative solutions were used to calculate the axial flow induction factor for each cross-section of the blades. The harmonic superposition method was used to simulate the fluctuating wind velocity time histories. The wind shear equation was used to calculate the mean wind velocities at different heights. Finally, the finite element method model was used to study the aerodynamic response of wind turbines under random wind loads. Results show that the top displacement of tower is increased accordingly by increasing the rotational speed of the blades. Hence, this should be considered in wind turbine design.
Starting Page 89
Ending Page 95
Page Count 7
File Format PDF
ISSN 1738494X
Journal Journal of Mechanical Science and Technology
Volume Number 25
Issue Number 1
e-ISSN 19763824
Language English
Publisher Korean Society of Mechanical Engineers
Publisher Date 2011-03-10
Publisher Place Heidelberg
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Wind turbine Momentum theory Blade element theory Aerodynamics Wind velocity Vibration, Dynamical Systems, Control Industrial and Production Engineering Mechanical Engineering
Content Type Text
Resource Type Article
Subject Mechanics of Materials Mechanical Engineering
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