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Design of high-deflection foils MHK applications - CFD models - Helical turbines

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The Ocean Renewable Power Company's (ORPC's) goal is to design, develop, and test hydrofoils with large deflections. The effects of the deflections on cross-flow turbine performance would be evaluated in order to inform design considerations for full-scale water turbines and other marine hydrokinetic devices.

CFD models of helical model scale turbines tested at UNH
OpenFOAM v1912
Tip Speed Ratio (TSR) = 3.00
Different strut configurations

HDF Helical Turbine CFD H225_TSR300_2deg.zip

OpenFOAM model V1912 of a Helical scale model turbine with Strut locations at 225mm, a tip speed ratio of 3.00 (TSR = 3.00), and a 2 degree pitch angle.
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HDF Helical Turbine CFD H900_TSR300_4_2_1deg.zip

OpenFOAM model V1912 of a Helical scale model turbine with Strut locations at 900mm, a tip speed ratio of 3.00 (TSR = 3.00), and a 4/2/1 degree pitch angle.
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Citation Formats

TY - DATA AB - The Ocean Renewable Power Company's (ORPC's) goal is to design, develop, and test hydrofoils with large deflections. The effects of the deflections on cross-flow turbine performance would be evaluated in order to inform design considerations for full-scale water turbines and other marine hydrokinetic devices. CFD models of helical model scale turbines tested at UNH OpenFOAM v1912 Tip Speed Ratio (TSR) = 3.00 Different strut configurations AU - Barrington, Matt A2 - McEntee, Jarlath DB - Open Energy Data Initiative (OEDI) DP - Open EI | National Renewable Energy Laboratory DO - 10.15473/1862290 KW - MHK KW - Marine KW - Hydrokinetic KW - energy KW - power KW - CFD KW - helical turbine KW - cross flow turbine KW - turbine KW - foil KW - airfoil KW - hydrofoil KW - model KW - simulation KW - design KW - cec KW - current energy converter LA - English DA - 2021/11/01 PY - 2021 PB - Ocean Renewable Power Company T1 - Design of high-deflection foils MHK applications - CFD models - Helical turbines UR - https://doi.org/10.15473/1862290 ER -
Export Citation to RIS
Barrington, Matt, and Jarlath McEntee. Design of high-deflection foils MHK applications - CFD models - Helical turbines. Ocean Renewable Power Company, 1 November, 2021, MHKDR. https://doi.org/10.15473/1862290.
Barrington, M., & McEntee, J. (2021). Design of high-deflection foils MHK applications - CFD models - Helical turbines. [Data set]. MHKDR. Ocean Renewable Power Company. https://doi.org/10.15473/1862290
Barrington, Matt and Jarlath McEntee. Design of high-deflection foils MHK applications - CFD models - Helical turbines. Ocean Renewable Power Company, November, 1, 2021. Distributed by MHKDR. https://doi.org/10.15473/1862290
@misc{OEDI_Dataset_8027, title = {Design of high-deflection foils MHK applications - CFD models - Helical turbines}, author = {Barrington, Matt and McEntee, Jarlath}, abstractNote = {The Ocean Renewable Power Company's (ORPC's) goal is to design, develop, and test hydrofoils with large deflections. The effects of the deflections on cross-flow turbine performance would be evaluated in order to inform design considerations for full-scale water turbines and other marine hydrokinetic devices.

CFD models of helical model scale turbines tested at UNH
OpenFOAM v1912
Tip Speed Ratio (TSR) = 3.00
Different strut configurations}, url = {https://mhkdr.openei.org/submissions/404}, year = {2021}, howpublished = {MHKDR, Ocean Renewable Power Company, https://doi.org/10.15473/1862290}, note = {Accessed: 2025-07-25}, doi = {10.15473/1862290} }
https://dx.doi.org/10.15473/1862290

Details

Data from Nov 1, 2021

Last updated Apr 11, 2022

Submitted Apr 5, 2022

Organization

Ocean Renewable Power Company

Contact

Jarlath McEntee

jmcentee@orpc.co

207.772.7707

Authors

Matt Barrington

Ocean Renewable Power Company

Jarlath McEntee

Ocean Renewable Power Company

DOE Project Details

Project Name Design of high-deflection foils for MHK applications

Project Lead Carrie Noonan

Project Number EE0008386

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