Offshore oscillating water columns (OWC) represent one of the most promising forms of wave energy converters. The hydrodynamic performance of such converters heavily depends on their interactions with ocean waves; therefore, understanding these interactions is essential. In this paper, a fully nonlinear 2D computational fluid dynamics (CFD) model based on RANS equations and VOF surface capturing scheme is implemented to carry out wave energy balance analyses for an offshore OWC. The numerical model is well validated against published physical measurements including; chamber differential air pressure, chamber water level oscillation and vertical velocity, overall wave energy extraction efficiency, reflected and transmitted waves, velocity an...
Wave energy is a viable source of ocean renewable energy and research is being conducted worldwide. ...
This research was performed with a focus on two key aspects of energy cost–reduction for offshore OW...
This paper presents an experimental and numerical hydrodynamic performance assessment of a 1:50 scal...
Offshore oscillating water columns (OWC) represent one of the most promising forms of wave energy co...
Offshore oscillating water columns (OWC) represent one of the most promising forms of wave energy co...
AbstractOffshore oscillating water columns (OWC) represent one of the most promising forms of wave e...
AbstractIn this paper, hydrodynamic wave loads on an offshore stationary–floating oscillating water ...
The Oscillating Water Column (OWC) is considered to be one of the most promising Wave Energy Convert...
The Oscillating Water Column (OWC) is considered to be one of the most promising Wave Energy Convert...
The Oscillating Water Column (OWC) is considered to be one of the most promising Wave Energy Convert...
This research was performed with a focus on two key aspects of energy cost–reduction for offshore OW...
Understanding the hydrodynamic interactions between ocean waves and the oscillating water column (OW...
Understanding the hydrodynamic interactions between ocean waves and the oscillating water column (OW...
Understanding the hydrodynamic interactions between ocean waves and the oscillating water column (OW...
This research was performed with a focus on two key aspects of energy cost–reduction for offshore OW...
Wave energy is a viable source of ocean renewable energy and research is being conducted worldwide. ...
This research was performed with a focus on two key aspects of energy cost–reduction for offshore OW...
This paper presents an experimental and numerical hydrodynamic performance assessment of a 1:50 scal...
Offshore oscillating water columns (OWC) represent one of the most promising forms of wave energy co...
Offshore oscillating water columns (OWC) represent one of the most promising forms of wave energy co...
AbstractOffshore oscillating water columns (OWC) represent one of the most promising forms of wave e...
AbstractIn this paper, hydrodynamic wave loads on an offshore stationary–floating oscillating water ...
The Oscillating Water Column (OWC) is considered to be one of the most promising Wave Energy Convert...
The Oscillating Water Column (OWC) is considered to be one of the most promising Wave Energy Convert...
The Oscillating Water Column (OWC) is considered to be one of the most promising Wave Energy Convert...
This research was performed with a focus on two key aspects of energy cost–reduction for offshore OW...
Understanding the hydrodynamic interactions between ocean waves and the oscillating water column (OW...
Understanding the hydrodynamic interactions between ocean waves and the oscillating water column (OW...
Understanding the hydrodynamic interactions between ocean waves and the oscillating water column (OW...
This research was performed with a focus on two key aspects of energy cost–reduction for offshore OW...
Wave energy is a viable source of ocean renewable energy and research is being conducted worldwide. ...
This research was performed with a focus on two key aspects of energy cost–reduction for offshore OW...
This paper presents an experimental and numerical hydrodynamic performance assessment of a 1:50 scal...