The hydrokinetic turbine is one of the renewable energy without generating emission impacted on environmental. In this work, the numerical simulation is used to investigate the influence of discretization along the blade surface towards the amount of the torque coefficient and power coefficient. This work will be done on Savonius hydrokinetic turbine numerically by using the Myring formula for n equal with 1 having the performance better than the conventional blade. This work will compare the performance among the blade discretization. Firstly, the numerical will be validated with experimental results at TSR of 0.8 and velocity of fluid kept constant at 0.22 m/s. Problem-solving uses Unsteady RANS with moving mesh for the rotating body. The turbulence model uses the Realizable k-epsilon (RKE) enhanced wall treatment with the discretization varied 200, 400, 800 and 1,600. The first layer number is 20 layers on the blade surface. This work obtains the torque coefficient and power coefficient. The results indicate that the increase of discretization on the surface of the blade has improved the accuracy results of the turbine performance by seeing the stability of graphic at 800 and 1,600. This Savonius model of Myring formula can use the number of the layer around 800 towards time efficiency.

1.
C. J.
Freitas
, 1999, “
The Issue of Numerical Uncertainty
”,
Second International Conference on CFD in the Minerals and Process Industries CSIRO Melbourne, Australia
:
29
34
(
1999
).
2.
N.
Ariwiyono
,
P. A.
Setiawan
,
A. W.
Husodo
,
Sudiyono
,
A.
Subekti
,
A. I.
Juniani
,
S.
So’im
,
P. P. S.
Lukitadi
,
R.
Indarti
,
F.
Hamzah
, “
A Numerical Study Of The Turbulence Model Influence On A Savonius Wind Turbine Performance By Means Of Moving Mesh
”,
Journal of Mechanical Engineering Research and Developments (JMERD)
42
(
3
):
91
93
(
2019
).
3.
T.
Wenlong
,
S.
Baowei
,
M.
Zhaoyang
, 2014, “
Numerical investigation of a Savonius wind turbine with elliptical blades
”,
Proceedings of the CSEE
,
34
,
796
802
.
4.
R. E.
Sheldahl
,
L. V.
Feltz
and
B. F.
Blackwell
1978
Wind Tunnel Performance Data for Two- and Three-Bucket Savonius Rotors
Journal of Energy
2
160
4
(
1978
)
5.
P. A.
Setiawan
,
T.
Yuwono
,
W. A.
Widodo
, 2018, “
Numerical simulation on improvement of a Savonius vertical axis water turbine performance to advancing blade side with a circular cylinder diameter variations
”,
IOP Conf. Ser.: Earth Environ. Sci
,
200
,
012
029
.
6.
P. A.
Setiawan
,
T.
Yuwono
,
W. A.
Widodo
, “
Effect of a circular cylinder in front of advancing blade on the Savonius water turbine by using transient simulation
”,
International Journal of Mechanical and Mechatronics
,
19
(
01
),
151
159
(
2019
).
7.
P. A.
Setiawan
,
T.
Yuwono
,
W. A.
Widodo
,
E.
Julianto
and
M.
Santoso
, “
Numerical study of a circular cylinder effect on the vertical axis Savonius water turbine performance at the side of the advancing blade with horizontal distance variations
”,
International Journal of Renewable Energy Research
,
9
(
2
),
978
985
(
2019
).
8.
D.
Satrio
,
I. K. A. P.
Utama
and
Mukhtasor
, “
The influence of time step setting on the CFD simulation result of vertical axis tidal current turbine
”,
Journal of Mechanical Engineering and Sciences
,
12
,
3399
3409
(
2018
).
9.
K.
Kacprzak
,
G.
Liskiewicz
and
K.
Sobczak
, 2013, “
Numerical investigation of conventional and modified Savonius wind turbines
”,
Renewable Energy
,
60
,
578
585
(
2013
).
This content is only available via PDF.