The generation of power from our oceans is moving to the
forefront in our quest for clean and sustainable energy, and
for tidal power vertical axis turbine designs are eminently
suitable. Research into these turbines however has lagged
behind that of other designs, and further research into their
hydrodynamic flow and loading characteristics through the use
of Computational Fluid Dynamics (CFD) and Experimental
Fluid Dynamics (EFD) is needed to improve their efficiency
and longevity. Previous CFD tidal turbine simulations have
used Two-Dimensional (2D) simulation models; this work
extends these simulations using Three-Dimensions (3D) to fully
capture turbine flow characteristics, loading and performance
parameters. These transient simulations were performed using
a commercial Reynolds Averaged Navier-Stokes (RANS)
solver. Theoretical momentum based models have also been
developed for comparison. At low tip speed ratio (l) both CFD
and momentum models predicted turbine power accurately
when compared to experimental results, but as l increases
CFD models without struts and momentum simulation models
showed increasing simulation error due largely to strut drag
effects that were not accounted for. The highest level of
prediction accuracy across all l ranges was determined by the
use of a 3D CFD model with struts due to the inclusion of the
resultant strut drag effects.
[1]
G. Rawlings.
Parametric characterization of an experimental vertical axis hydro turbine
,
2008
.
[2]
C. Osorio,et al.
Simulation and evaluation of a straight-bladed Darrieus-type cross flow marine turbine
,
2010
.
[3]
R. E. Sheldahl,et al.
Aerodynamic Characteristics of Seven Symmetrical Airfoil Sections Through 180-Degree Angle of Attack for Use in Aerodynamic Analysis of Vertical Axis Wind Turbines
,
1981
.
[4]
Yasser Nabavi.
Numerical study of the duct shape effect on the performance of a ducted vertical axis tidal turbine
,
2008
.
[5]
I. Paraschivoiu.
Wind turbine design with emphasis on Darrieus concept [ressource électronique] / Ion Paraschivoiu
,
2002
.
[6]
R. Templin.
Aerodynamic performance theory for the NRC vertical-axis wind turbine
,
1974
.
[7]
Wei-Haur Lam,et al.
Numerical study of straight-bladed Darrieus-type tidal turbine
,
2009
.