Javascript must be enabled to continue!
Numerical Analysis of Wake Interaction of Darrieus Tidal Turbine in Shallow Water Application
View through CrossRef
Malaysia is rich in natural resources including coal and fossil fuels. These natural resources, however, will diminish and pollute the ecosystem. Thus, researchers have proposed the use of renewable energy sources such as solar, wind, wave, and other energies as potential solutions to resolve the issue. This study focuses on tidal energy, specifically the vertical axis tidal turbine (VATT) for shallow water application. While a majority of the VATT research shows that this device can work effectively in deep water, its effectiveness in shallow water has yet to be explored comprehensively. To analyse the turbine's performance, Computational Fluid Dynamics (CFD) method was applied. The Darrieus turbine was used in this study since it is the ideal turbine design for shallow water in Malaysia with an average current speed of 1.0 ????????????????−1. The Darrieus turbine model used in this project is 5 metres tall and 4.3 metres in diameter. The simulation was evaluated based on wake characteristics. The Darrieus turbine was designed using the NACA0018 airfoil. Following the results of single turbine analysis, the wake has recovered to its ambience velocity at 60 metres behind the device. The wake generation due to the multi-row configuration of the devices was also examined. The three-turbine configuration verifies the concept that installing two turbines side by side boosts the performance significantly. Notably, the improvement is sufficient to mitigate the adverse effects due to the turbulence wakes from upstream turbines. The findings demonstrate that by employing a staggered design (1 device upstream and 2 devices downstream), the wake can recover its initial velocity faster due to a shorter wake generation distance.
Title: Numerical Analysis of Wake Interaction of Darrieus Tidal Turbine in Shallow Water Application
Description:
Malaysia is rich in natural resources including coal and fossil fuels.
These natural resources, however, will diminish and pollute the ecosystem.
Thus, researchers have proposed the use of renewable energy sources such as solar, wind, wave, and other energies as potential solutions to resolve the issue.
This study focuses on tidal energy, specifically the vertical axis tidal turbine (VATT) for shallow water application.
While a majority of the VATT research shows that this device can work effectively in deep water, its effectiveness in shallow water has yet to be explored comprehensively.
To analyse the turbine's performance, Computational Fluid Dynamics (CFD) method was applied.
The Darrieus turbine was used in this study since it is the ideal turbine design for shallow water in Malaysia with an average current speed of 1.
0 ????????????????−1.
The Darrieus turbine model used in this project is 5 metres tall and 4.
3 metres in diameter.
The simulation was evaluated based on wake characteristics.
The Darrieus turbine was designed using the NACA0018 airfoil.
Following the results of single turbine analysis, the wake has recovered to its ambience velocity at 60 metres behind the device.
The wake generation due to the multi-row configuration of the devices was also examined.
The three-turbine configuration verifies the concept that installing two turbines side by side boosts the performance significantly.
Notably, the improvement is sufficient to mitigate the adverse effects due to the turbulence wakes from upstream turbines.
The findings demonstrate that by employing a staggered design (1 device upstream and 2 devices downstream), the wake can recover its initial velocity faster due to a shorter wake generation distance.
Related Results
Effect of Twist Angle on the Performance of Darrieus Vertical Axis Wind Turbines
Effect of Twist Angle on the Performance of Darrieus Vertical Axis Wind Turbines
Abstract
Conventional straight-bladed Darrieus wind turbines have some drawbacks including large oscillations of coefficient of torque with negative values within a ...
The Effect of Deflector Angle on the Performance of Turbine Combination Darrieus-Savonius
The Effect of Deflector Angle on the Performance of Turbine Combination Darrieus-Savonius
The Savonius and Darrieus are vertical-axis wind turbines. This turbine has resistance on one side of the blade that makes it difficult for the shaft to rotate resulting in reduced...
Statistical Analysis on The Near-Wake Region of RANS Turbulence Closure Models for Vertical Axis Tidal Turbine
Statistical Analysis on The Near-Wake Region of RANS Turbulence Closure Models for Vertical Axis Tidal Turbine
The flow field in the near wake region (up to six turbine diameters downstream) of a tidal current turbine is strongly driven by the combined wake of the device support structure a...
Numerical Simulation of Large Scale Wind Turbine Wake and the Influence on Vibration of Downstream Wind Turbine
Numerical Simulation of Large Scale Wind Turbine Wake and the Influence on Vibration of Downstream Wind Turbine
In order to investigate the wake evolution law of large scale horizontal axis wind turbine and its influence on vibration of downstream wind turbine, large eddy simulation method h...
Experimental Study of Gurney Flap on Darrieus Wind Turbine Performance
Experimental Study of Gurney Flap on Darrieus Wind Turbine Performance
Wind energy is a renewable energy that is easily obtained and friendly to the environment. The Darrieus wind turbine is a turbine model that is suitable for use in areas with low w...
Optimal tuning of engineering wake models through LiDAR measurements
Optimal tuning of engineering wake models through LiDAR measurements
Abstract. Engineering wake models provide the invaluable advantage to predict wind turbine wakes, power capture, and, in turn, annual energy production for an entire wind farm with...
The Development of a Risk-Based Guideline for the Design of Current and Tidal Turbines
The Development of a Risk-Based Guideline for the Design of Current and Tidal Turbines
Tidal turbines are emerging technologies offering a great potential by the harnessing of a renewable and predictable resource. However, exploitation at sea comes with significant d...
Impact of Number of Blades and Solidity on the Performance of a Darrieus Vertical Axis Wind Turbine With Helical Blades
Impact of Number of Blades and Solidity on the Performance of a Darrieus Vertical Axis Wind Turbine With Helical Blades
Abstract
The number of blades and the solidity ratio for Darrieus vertical axis wind turbines are two factors that significantly influence the performance of these w...

