Triboelectric Turbines: Multi-Rotor Counter-Rotating Wind Turbine Utilizing Direct-Current Triboelectric Nanogenerators

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Triboelectric Turbines: Multi-Rotor Counter-Rotating Wind Turbine Utilizing Direct-Current Triboelectric Nanogenerators ( triboelectric-turbines-multi-rotor-counter-rotating-wind-tur )

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the variable power output of the turbine in a readily avaiable, easily controlled form. These batteries can then be used to directly power other devices, such as lights or drinking fountains (which would require the batteries to be permanently wired to these devices). Alternatively, the batteries can be physically removed from the charging array one at a time, and used to power other objects (such as golf carts or portable electronics). Clearly, the power output of the turbine determines which of these forms is the most practical. Also of primary importance is the accesibility of the battery bank, which is dependant on the location of the actual wind turbine. Proper location is absolutely critical for this project. Wind speed, safety, accessibility, aesthetics, administrative approval, and other factors will all need to be taken into account when making this choice. In general, higher elevations above ground level directly corellate with higher wind speeds, and rather than construct a one-hundred foot turbine, it is much more practical to build an approximately 10 foot turbine on top of an existing, multistory building. At the moment, the Union College administration has expressed a commitment to maintaining the historical appearance of the main campus, which makes it unlikely that approval would be granted for such locations as the roof of the Peter Irving Wold Center, the roof of Reamer Campus Center, along the wall near the flagpole in the center of campus, or other potentially suitable locations (as determined by technical factors such as typical wind speed). Safety considerations support the use of rooftops, as this would prevent people or objects from colliding with the turbine without necessitating the addition of a safety cage. Rooftops do make installation, operation and maintenance somewhat more complicated and potentially dangerous, though there are several accessible roofs on campus that eliminate these risks. One such potential site may eventually be found on or near the new Science and Engineering Center, presently under construction. Accessibility is especially important if the design proves to require extensive maintenance, or if the power is collected in batteries which are intended to be removed for use. Forti, 23

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