The Reynolds Stress Model (RSM) has been avoided for turbulence closure in CFD simulations of wind turbines, largely due to the computational expense and the high potential for numerical instability. The advantage of using RSM is having access to shear stresses that are not available from two-equation RANS-based closure models like k-e and k-w. Access to the shear stresses will aide in the understanding of how the blade design will affect the wake, particularly in the near-wake region. In this research, the RSM turbulence model has been successfully applied in simulating a three-bladed small-scale wind turbine through a direct-model approach and an actuator disk approach. In the direct-model method, the turbine blades were discretized withi...
A computational study of the aerodynamics of the straight-bladed VAWTs was performed by RNG k − ε an...
The interaction of turbulent wakes with one another and with the adjacent fluid directly impacts the...
Tidal turbines operate in marine currents characterised by strong turbulence. This environment impa...
Wind energy is one of the fastest growing sources of renewable energy. Because of the increasing gro...
This thesis presents Computational Fluid Dynamics (CFD) simulations of renewable turbines akin to th...
The Reynolds Stress Model (RSM) is adopted to simulate the wind turbine wake and the simulation resu...
Velocity profiles were measured in the wake of two wake generator models in the University of New Ha...
The objective of the present work is to improve the accuracy of Actuator Line Modeling (ALM) in pred...
Horizontal-axis wind turbines operate in a complex, inherently unsteady aerodynamic environment. Th...
There are different methods to study flow characteristics around a wind turbine; common methods are ...
Wind turbines are critically important in the quest to move towards a non-renewable energy independe...
As a result of insects or other environmental fouling, surface roughness on wind turbine blades can ...
One of the most abundant sources of renewable energy is wind. Today, a considerable amount of resour...
In recent years, the size and capacity of wind farms have increased significantly, as larger turbine...
An experimental study was conducted to investigate the mean and turbulent flow characteristics in th...
A computational study of the aerodynamics of the straight-bladed VAWTs was performed by RNG k − ε an...
The interaction of turbulent wakes with one another and with the adjacent fluid directly impacts the...
Tidal turbines operate in marine currents characterised by strong turbulence. This environment impa...
Wind energy is one of the fastest growing sources of renewable energy. Because of the increasing gro...
This thesis presents Computational Fluid Dynamics (CFD) simulations of renewable turbines akin to th...
The Reynolds Stress Model (RSM) is adopted to simulate the wind turbine wake and the simulation resu...
Velocity profiles were measured in the wake of two wake generator models in the University of New Ha...
The objective of the present work is to improve the accuracy of Actuator Line Modeling (ALM) in pred...
Horizontal-axis wind turbines operate in a complex, inherently unsteady aerodynamic environment. Th...
There are different methods to study flow characteristics around a wind turbine; common methods are ...
Wind turbines are critically important in the quest to move towards a non-renewable energy independe...
As a result of insects or other environmental fouling, surface roughness on wind turbine blades can ...
One of the most abundant sources of renewable energy is wind. Today, a considerable amount of resour...
In recent years, the size and capacity of wind farms have increased significantly, as larger turbine...
An experimental study was conducted to investigate the mean and turbulent flow characteristics in th...
A computational study of the aerodynamics of the straight-bladed VAWTs was performed by RNG k − ε an...
The interaction of turbulent wakes with one another and with the adjacent fluid directly impacts the...
Tidal turbines operate in marine currents characterised by strong turbulence. This environment impa...