Researchers at the National Renewable Energy Laboratory (NREL) developed a new complex modeling and analysis tool capable of analyzing floating platform concepts for offshore wind turbines. The new modeling tool combines the computational methodologies used to analyze land-based wind turbines with the comprehensive hydrodynamic computer programs developed for offshore oil and gas industries. This new coupled dynamic simulation tool will enable the development of cost-effective offshore technologies capable of harvesting the rich offshore wind resources at water depths that cannot be reached using the current technology
In this new era of advanced technologies, there are many solutions to overcome the energy problems ...
CIVINS (Civilian Institutions) Thesis documentThe use of wind power is in a period of rapid growth w...
A coupled aerodynamic-hydrodynamic-servo simulation software capable of motion and performance predi...
NREL researchers are supporting offshore wind power development with computer models that allow deta...
This 2-page fact sheet describes NREL's offshore wind research and development efforts and capabilit...
This paper presents the modeling and simulation of offshore wind power platform for oil and gas comp...
International audienceResults of a study that investigates the feasibility of platforms that support...
Wind energy is a promising alternate energy resource. However, the on-land wind farms are limited by...
This thesis supports the development of cost effective methods for the design and evaluation of floa...
Wind energy is a promising alternate energy resource. However, the on-land wind farms are limited by...
Beyond many of Earth’s coasts exists a vast deepwater wind resource that can be tapped to provide su...
In 2007, the FAST wind turbine simulation tool, developed and maintained by the U.S. Department of E...
Current offshore wind turbine designs are basic concepts using standard upwind land-based wind turbi...
This paper presents the use of fully coupled aero-hydro-servo-elastic simulation tools to perform a ...
This paper presents the current major modeling challenges for floating offshore wind turbine design ...
In this new era of advanced technologies, there are many solutions to overcome the energy problems ...
CIVINS (Civilian Institutions) Thesis documentThe use of wind power is in a period of rapid growth w...
A coupled aerodynamic-hydrodynamic-servo simulation software capable of motion and performance predi...
NREL researchers are supporting offshore wind power development with computer models that allow deta...
This 2-page fact sheet describes NREL's offshore wind research and development efforts and capabilit...
This paper presents the modeling and simulation of offshore wind power platform for oil and gas comp...
International audienceResults of a study that investigates the feasibility of platforms that support...
Wind energy is a promising alternate energy resource. However, the on-land wind farms are limited by...
This thesis supports the development of cost effective methods for the design and evaluation of floa...
Wind energy is a promising alternate energy resource. However, the on-land wind farms are limited by...
Beyond many of Earth’s coasts exists a vast deepwater wind resource that can be tapped to provide su...
In 2007, the FAST wind turbine simulation tool, developed and maintained by the U.S. Department of E...
Current offshore wind turbine designs are basic concepts using standard upwind land-based wind turbi...
This paper presents the use of fully coupled aero-hydro-servo-elastic simulation tools to perform a ...
This paper presents the current major modeling challenges for floating offshore wind turbine design ...
In this new era of advanced technologies, there are many solutions to overcome the energy problems ...
CIVINS (Civilian Institutions) Thesis documentThe use of wind power is in a period of rapid growth w...
A coupled aerodynamic-hydrodynamic-servo simulation software capable of motion and performance predi...