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

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. FEA models - NASTRAN Helical foil turbines tested at UNH tow tank Glass and carbon composite material properties Loads derived from CFD models

Resources

Name Format Description Link
0 Helical foil turbine FEA analysis with strut spacing at 900mm with a Tip Speed ratio of 3.00 (TSR = 3.00) using NASTRAN model of CFD loads applied to scale model turbine. https://mhkdr.openei.org/files/403/HDF_H900_TSR300.nas
0 Helical foil turbine FEA analysis with strut spacing at 225mm with a Tip Speed ratio of 3.00 (TSR = 3.00) using NASTRAN model of CFD loads applied to scale model turbine. https://mhkdr.openei.org/files/403/HDF_H225_TSR300.nas

Tags

  • cec
  • material-study
  • airfoil
  • hydrofoil
  • hydrokinetic
  • design
  • cross-flow-turbine
  • mhk
  • helical-turbine
  • material
  • turbine
  • marine
  • power
  • model
  • fea
  • foil
  • current-energy-converter
  • simulation
  • energy

Topics

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