• DocumentCode
    1351525
  • Title

    Numerical Study of the Shielding Properties of Macroscopic Hybrid Ferromagnetic/Superconductor Hollow Cylinders

  • Author

    Lousberg, Gregory P. ; Fagnard, Jean-Francois ; Ausloos, Marcel ; Vanderbemden, Philippe ; Vanderheyden, Benoît

  • Author_Institution
    Dept. of Electr. Eng. & Comput. Sci., Univ. of Liege, Liege, Belgium
  • Volume
    20
  • Issue
    1
  • fYear
    2010
  • Firstpage
    33
  • Lastpage
    41
  • Abstract
    We study the magnetic shielding properties of hybrid ferromagnetic/superconductor (F/S) structures consisting of two coaxial cylinders, with one of each material. We use an axisymmetric finite-element model in which the electrical properties of the superconducting tube are modeled by a nonlinear E-J power law with a magnetic-field-dependent critical current density whereas the magnetic properties of the ferromagnetic material take saturation into account. We study and compare the penetration of a uniform axial magnetic field in two cases: 1) a ferromagnetic tube placed inside a larger superconducting tube (Ferro-In configuration) and 2) a ferromagnetic tube placed outside the superconducting one (Ferro-Out configuration). In both cases, we assess how the ferromagnetic tube improves the shielding properties of the sole superconducting tube. The influence of the geometrical parameters of the ferromagnetic tube is also studied: It is shown that, upon an optimal choice of the geometrical parameters, the range of magnetic fields that are efficiently shielded by the high-temperature superconductor tube alone can be increased by a factor of up to 7 (2) in a Ferro-Out (Ferro-In) configuration. The optimal configuration uses a 1020 carbon steel with a thickness of 2 mm and a height that is half that of the superconducting cylinder (80 mm).
  • Keywords
    critical current density (superconductivity); ferromagnetic materials; finite element analysis; high-temperature superconductors; magnetic shielding; pipes; 1020 carbon steel; axisymmetric finite element model; coaxial cylinders; electrical property; ferro-in configuration; ferro-out configuration; ferromagnetic material; geometrical parameters; high-temperature superconductor tube; hybrid ferromagnetic-superconductor structure; magnetic shielding property; magnetic-field-dependent critical current density; nonlinear E-J power law; numerical study; Ferromagnetic/high-temperature superconductors (HTSs) hybrid structure; finite element; magnetic shield;
  • fLanguage
    English
  • Journal_Title
    Applied Superconductivity, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1051-8223
  • Type

    jour

  • DOI
    10.1109/TASC.2009.2036855
  • Filename
    5350705