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- W2471589925 abstract "Vertical axis wind turbines are currently being investigated in light of new advancements in high lift, circulation control technology. Previously only variable pitch turbines were considered. Varying the blade pitch for a horizontal axis turbine is a viable method of controlling aerodynamic forces to compensate for unsteady wind and to maximize the generated power. Vertical axis wind turbines require the blade pitch to be constantly changing during rotation to achieve optimum lift characteristics. The pitch change, for some wind speeds, is so extreme and abrupt that mechanical implementation has yet to be proven successful. Instead of physically changing blade pitch, circulation control can be used to accomplish the same effect. Multiple valves placed individually along the span for upper and lower blowing surfaces allow for customized performance of a circulation control vertical axis wind turbine. In order to most effectively utilize the benefits of circulation control, a valve controller has been developed. This controller evaluates the wind conditions and makes decisions about which valve to open and close. Initial research has been performed to gather information about and to simulate a circulation controlled vertical axis wind turbine. This wind turbine will be unlike any other turbine to date due to the independently controlled blowing slots located span-wise on each blade to enhance performance. The focus of this work was to identify a control methodology that utilizes circulation control to improve performance and possibly to reduce structural stress on the overall structure." @default.
- W2471589925 created "2016-07-22" @default.
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- W2471589925 date "2010-01-01" @default.
- W2471589925 modified "2023-09-27" @default.
- W2471589925 title "Controller Design Methodology for an Advanced Lift, Vertical Axis Wind Turbine" @default.
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