Characterization for Creek Tides Energy and Power Reversible Blade Turbine

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Reactive reversible blade turbine (RRBT) is a new technology which provides a solution to hydro-power generation from slow-moving currents such as rivers, tides, and oceans. It features blades that pivot to capture the maximum force of the water current and then pivot again to a neutral position to minimize drag, allowing the turbine to continuously create torque.

This data set characterize the power performance of the RRBT for power generation for different loads and incoming flow speeds. The ZIP file contains folders for 9 different loads, each containing files for various flow speeds.

Citation Formats

Florida Atlantic University. (2024). Characterization for Creek Tides Energy and Power Reversible Blade Turbine [data set]. Retrieved from https://mhkdr.openei.org/submissions/566.
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Curet, Oscar. Characterization for Creek Tides Energy and Power Reversible Blade Turbine. United States: N.p., 17 Sep, 2024. Web. https://mhkdr.openei.org/submissions/566.
Curet, Oscar. Characterization for Creek Tides Energy and Power Reversible Blade Turbine. United States. https://mhkdr.openei.org/submissions/566
Curet, Oscar. 2024. "Characterization for Creek Tides Energy and Power Reversible Blade Turbine". United States. https://mhkdr.openei.org/submissions/566.
@div{oedi_566, title = {Characterization for Creek Tides Energy and Power Reversible Blade Turbine}, author = {Curet, Oscar.}, abstractNote = {Reactive reversible blade turbine (RRBT) is a new technology which provides a solution to hydro-power generation from slow-moving currents such as rivers, tides, and oceans. It features blades that pivot to capture the maximum force of the water current and then pivot again to a neutral position to minimize drag, allowing the turbine to continuously create torque.

This data set characterize the power performance of the RRBT for power generation for different loads and incoming flow speeds. The ZIP file contains folders for 9 different loads, each containing files for various flow speeds. }, doi = {}, url = {https://mhkdr.openei.org/submissions/566}, journal = {}, number = , volume = , place = {United States}, year = {2024}, month = {09}}

Details

Data from Sep 17, 2024

Last updated Dec 5, 2024

Submitted Sep 17, 2024

Organization

Florida Atlantic University

Contact

Oscar M Curet

561.297.1560

Authors

Oscar Curet

Florida Atlantic University

DOE Project Details

Project Name Testing Expertise and Access for Marine Energy Research

Project Lead Lauren Ruedy

Project Number EE0008895

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