TEAMER: Crossflow Turbine Fairing Geometry Optimization - Report and CFD Modeling Files

The dataset includes computational fluid dynamics (CFD) models and simulation files for crossflow turbines as well as a detailed project report. The report documents the project undertaken by the Ocean Renewable Power Company (ORPC) to design and optimize a modular fairing for the Modular RivGen Marine Hydrokinetic (MHK) turbine, which enhances the efficient deployment and operation of turbine arrays. The project focused on optimizing the hydrodynamic performance of the fairing using CFD, with an emphasis on two key geometric parameters: the fairing's cross-sectional shape and the spacing between the rotor and the fairing. The analysis aimed to maximize net power output while also assessing discretized loading to evaluate ultimate and fatigue loads on the turbine components.

The numerical modeling was conducted using both the commercial CFD software Star-CCM+ and the open-source code openFOAM, with the latter utilizing the actuator line library, turbinesFOAM. This dual-code approach was intended to increase confidence in the results and demonstrate the viability of using open-source tools for high-fidelity marine energy modeling. This dataset includes all necessary files for actuator line simulations in openFOAM, as well as 2D blade-resolved CFD results, along with Python and Java scripts for setting up and post-processing simulations.

Data and Resources

Field Value
DOI 10.15473/2429272
accessLevel public
bureauCode {019:20}
catalog_@context https://openei.org/data.json
catalog_@id https://openei.org/data.json
catalog_conformsTo https://project-open-data.cio.gov/v1.1/schema
catalog_describedBy https://project-open-data.cio.gov/v1.1/schema/catalog.json
dataQuality true
datagov_dedupe_retained 20250120171954
identifier https://data.openei.org/submissions/8096
issued 2024-08-08T06:00:00Z
landingPage https://mhkdr.openei.org/submissions/557
license https://creativecommons.org/licenses/by/4.0/
modified 2024-08-14T15:12:10Z
old-spatial {"type":"Polygon","coordinates":[[[-71.96717578125,42.7708879961092],[-71.351005859375,42.7708879961092],[-71.351005859375,43.31032074985983],[-71.96717578125,43.31032074985983],[-71.96717578125,42.7708879961092]]]}
programCode {019:009}
projectLead Lauren Ruedy
projectNumber EE0008895
projectTitle Testing Expertise and Access for Marine Energy Research
publisher Ocean Renewable Power Company
resource-type Dataset
source_datajson_identifier true
source_hash cbb03d2d1d3969fd1d7e9c0545d96bb2b648b6d94dd2161c003ab3a9d5185a73
source_schema_version 1.1
spatial {"type":"Polygon","coordinates":[[[-71.96717578125,42.7708879961092],[-71.351005859375,42.7708879961092],[-71.351005859375,43.31032074985983],[-71.96717578125,43.31032074985983],[-71.96717578125,42.7708879961092]]]}
Groups
  • AmeriGEOSS
  • National Provider
  • North America
Tags
  • 2d-blade-resolved
  • AmeriGEO
  • AmeriGEOSS
  • CKAN
  • GEO
  • GEOSS
  • National
  • North America
  • United States
  • cfd
  • cfd-results
  • code
  • crossflow-turbine
  • fatigue
  • hydrokinetic
  • java
  • mhk
  • model
  • numerical-modeling
  • openfoam
  • orpc
  • post-access-report
  • power-output
  • python
  • rivgen
  • star-ccm
  • teamer
  • turbinesfoam
isopen True
license_id cc-by
license_title Creative Commons Attribution
license_url http://www.opendefinition.org/licenses/cc-by
maintainer Jarlath McEntee
maintainer_email jmcentee@orpc.co
metadata_created 2025-09-24T11:03:06.332339
metadata_modified 2025-09-24T11:03:06.332349
notes The dataset includes computational fluid dynamics (CFD) models and simulation files for crossflow turbines as well as a detailed project report. The report documents the project undertaken by the Ocean Renewable Power Company (ORPC) to design and optimize a modular fairing for the Modular RivGen Marine Hydrokinetic (MHK) turbine, which enhances the efficient deployment and operation of turbine arrays. The project focused on optimizing the hydrodynamic performance of the fairing using CFD, with an emphasis on two key geometric parameters: the fairing's cross-sectional shape and the spacing between the rotor and the fairing. The analysis aimed to maximize net power output while also assessing discretized loading to evaluate ultimate and fatigue loads on the turbine components. The numerical modeling was conducted using both the commercial CFD software Star-CCM+ and the open-source code openFOAM, with the latter utilizing the actuator line library, turbinesFOAM. This dual-code approach was intended to increase confidence in the results and demonstrate the viability of using open-source tools for high-fidelity marine energy modeling. This dataset includes all necessary files for actuator line simulations in openFOAM, as well as 2D blade-resolved CFD results, along with Python and Java scripts for setting up and post-processing simulations.
num_resources 3
num_tags 28
title TEAMER: Crossflow Turbine Fairing Geometry Optimization - Report and CFD Modeling Files