Knight & Carver was contracted by Sandia National Laboratories to develop a Sweep Twist Adaptive Rotor (STAR) blade that reduced operating loads, thereby allowing a larger, more productive rotor. The blade design used outer blade sweep to create twist coupling without angled fiber. Knight & Carver successfully designed, fabricated, tested and evaluated STAR prototype blades. Through laboratory and field tests, Knight & Carver showed the STAR blade met the engineering design criteria and economic goals for the program. A STAR prototype was successfully tested in Tehachapi during 2008 and a large data set was collected to support engineering and commercial development of the technology. This report documents the methodology used to develop th...
Individual- and Local Blade Control (IBC/LBC) for helicopter rotors promises to be a method to incre...
Vibration and noise are omnipresent in a helicopter environment and therefore their reduction is an ...
Within the DLR project AcTOR (Active Twist Optimized Rotor), a four-bladed, fully instrumented activ...
The growth of wind energy is sustained by innovation that lowers the cost of energy. One recent inno...
A dynamic modeling effort of a swept-blade wind turbine rotor has been conducted. The swept-blade co...
One of the technological challenges in wind power is the development of a next generation of feasibl...
In the present work, an overview is provided on the activities performed by CIRA, DLR and Univ of Br...
The power generated by a wind turbine is proportional to the diameter of the blades on the turbine; ...
A dynamic modeling effort of a swept-blade wind turbine rotor has been conducted. The swept-blade c...
For the investigation of the passive technology in the Smart Blades project two different approaches...
Rotor blades can be found in many engineering applications, mainly associated with converting energy...
Evaluation of Aeroelastically Tailored Small Wind Turbine Blades Final Report Global Energy Concepts...
An Advanced Active Twist Rotor (AATR) is currently being developed by the U.S. Army Vehicle Technolo...
Improving wind turbine blades via bend-twist coupling confronts two difficult challenges. The first ...
The increasing utilization of green resources is driving research toward the design and development ...
Individual- and Local Blade Control (IBC/LBC) for helicopter rotors promises to be a method to incre...
Vibration and noise are omnipresent in a helicopter environment and therefore their reduction is an ...
Within the DLR project AcTOR (Active Twist Optimized Rotor), a four-bladed, fully instrumented activ...
The growth of wind energy is sustained by innovation that lowers the cost of energy. One recent inno...
A dynamic modeling effort of a swept-blade wind turbine rotor has been conducted. The swept-blade co...
One of the technological challenges in wind power is the development of a next generation of feasibl...
In the present work, an overview is provided on the activities performed by CIRA, DLR and Univ of Br...
The power generated by a wind turbine is proportional to the diameter of the blades on the turbine; ...
A dynamic modeling effort of a swept-blade wind turbine rotor has been conducted. The swept-blade c...
For the investigation of the passive technology in the Smart Blades project two different approaches...
Rotor blades can be found in many engineering applications, mainly associated with converting energy...
Evaluation of Aeroelastically Tailored Small Wind Turbine Blades Final Report Global Energy Concepts...
An Advanced Active Twist Rotor (AATR) is currently being developed by the U.S. Army Vehicle Technolo...
Improving wind turbine blades via bend-twist coupling confronts two difficult challenges. The first ...
The increasing utilization of green resources is driving research toward the design and development ...
Individual- and Local Blade Control (IBC/LBC) for helicopter rotors promises to be a method to incre...
Vibration and noise are omnipresent in a helicopter environment and therefore their reduction is an ...
Within the DLR project AcTOR (Active Twist Optimized Rotor), a four-bladed, fully instrumented activ...