Design, Fabrication, and Test of a 5-kWh/100-kW Flywheel Energy Storage Utilizing a High-Temperature Superconducting Bearing

@article{Strasik2007DesignFA,
  title={Design, Fabrication, and Test of a 5-kWh/100-kW Flywheel Energy Storage Utilizing a High-Temperature Superconducting Bearing},
  author={Michael Strasik and P. Johnson and A. C. Day and J. Mittleider and M. D. Higgins and Jim Edwards and J. Schindler and K. E. McCrary and C. R. McIver and D. Carlson and J Gonder and J R Hull},
  journal={IEEE Transactions on Applied Superconductivity},
  year={2007},
  volume={17},
  pages={2133-2137}
}
The Boeing team has designed, fabricated, and is currently testing a 5-kWh/100-kW flywheel energy-storage system (FESS) utilizing a high-temperature superconducting (HTS) bearing suspension/damping system. Primary design features include: a robust rotor design utilizing a composite rim combined with a metallic hub to create a 164-kg rotor assembly without critical resonances within the normal operating range, a closed-loop passive HTS bearing suspension/damping system, and a brushless 100-kW… CONTINUE READING
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