Design of high deflection foils for MHK applications - CFD files
Resources
5 resources available
-
HDF_TSR240_S123_4deg.zip
ZIP -
HDF_TSR240_S225_4deg.zip
ZIP -
HDF_TSR240_S450_4deg.zip
ZIP -
HDF_TSR240_S675_4deg.zip
ZIP -
HDF_TSR240_S900_4deg.zip
ZIP
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Complete Metadata
| @type | dcat:Dataset |
|---|---|
| accessLevel | public |
| bureauCode |
[ "019:20" ] |
| contactPoint |
{ "fn": "Jarlath McEntee", "@type": "vcard:Contact", "hasEmail": "mailto:jmcentee@orpc.co" } |
| dataQuality |
true
|
| description | 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. OpenFOAM V1912 files for straight foil model scale turbines in the University of New Hampshire tow tank. Strut Locations = (0.13, 0.225, 0.450, 0.675, 0.900) [m] Tip speed ratio = 2.40 |
| distribution |
[ { "@type": "dcat:Distribution", "title": "HDF_TSR240_S123_4deg.zip", "format": "zip", "accessURL": "https://mhkdr.openei.org/files/401/HDF_TSR240_S123_4deg.zip", "mediaType": "application/zip", "description": "Straight turbine CFD model for 0.123m Strut spacing using "OpenFOAM V1912" CFD Software with a tip speed ratio of 2.40 and a 4 degree pitch angle." }, { "@type": "dcat:Distribution", "title": "HDF_TSR240_S225_4deg.zip", "format": "zip", "accessURL": "https://mhkdr.openei.org/files/401/HDF_TSR240_S225_4deg.zip", "mediaType": "application/zip", "description": "Straight turbine CFD model for 0.225m Strut spacing using "OpenFOAM V1912" CFD Software with a tip speed ratio of 2.40 and a 4 degree pitch angle." }, { "@type": "dcat:Distribution", "title": "HDF_TSR240_S450_4deg.zip", "format": "zip", "accessURL": "https://mhkdr.openei.org/files/401/HDF_TSR240_S450_4deg.zip", "mediaType": "application/zip", "description": "Straight turbine CFD model for 0.450m Strut spacing using "OpenFOAM V1912" CFD Software with a tip speed ratio of 2.40 and a 4 degree pitch angle." }, { "@type": "dcat:Distribution", "title": "HDF_TSR240_S675_4deg.zip", "format": "zip", "accessURL": "https://mhkdr.openei.org/files/401/HDF_TSR240_S675_4deg.zip", "mediaType": "application/zip", "description": "Straight turbine CFD model for 0.675m Strut spacing using "OpenFOAM V1912" CFD Software with a tip speed ratio of 2.40 and a 4 degree pitch angle." }, { "@type": "dcat:Distribution", "title": "HDF_TSR240_S900_4deg.zip", "format": "zip", "accessURL": "https://mhkdr.openei.org/files/401/HDF_TSR240_S900_4deg.zip", "mediaType": "application/zip", "description": "Straight turbine CFD model for 0.900m Strut spacing using "OpenFOAM V1912" CFD Software with a tip speed ratio of 2.40 and a 4 degree pitch angle." } ] |
| DOI | 10.15473/1862293 |
| identifier | https://data.openei.org/submissions/8024 |
| issued | 2021-06-01T06:00:00Z |
| keyword |
[ "CFD", "Hydrokinetic", "MHK", "Marine", "OpenFOAM", "airfoil", "cec", "cross flow turbine", "current energy converter", "design", "energy", "foil", "hydrofoil", "model", "power", "simulation", "straight turbine", "tidal turbine", "turbine" ] |
| landingPage | https://mhkdr.openei.org/submissions/401 |
| license | https://creativecommons.org/licenses/by/4.0/ |
| modified | 2022-04-11T15:21:27Z |
| programCode |
[ "019:009" ] |
| projectLead | Carrie Noonan |
| projectNumber | EE0008386 |
| projectTitle | Design of high-deflection foils for MHK applications |
| publisher |
{ "name": "Ocean Renewable Power Company", "@type": "org:Organization" } |
| spatial |
"{"type":"Polygon","coordinates":[[[-71.02513046874999,43.133229422168796],[-69.36627515625,43.133229422168796],[-69.36627515625,44.098861385690306],[-71.02513046874999,44.098861385690306],[-71.02513046874999,43.133229422168796]]]}"
|
| title | Design of high deflection foils for MHK applications - CFD files |