A simplified model of the field dependence for HTS conductor on round core (CORC) cables
IEEE Transactions on Applied Superconductivity, 2021•ieeexplore.ieee.org
This article presents a simplified mathematical model the anisotropic magnetic field
dependence (AMFD) for simulating the High-temperature superconducting (HTS) Conductor
on Round Core (CORC) Cables. All these simulations of HTS CORC Cable were performed
based on the finite-element method (FEM) H-formulation model merged into the numerical
platform COMSOL Multi-physics. The simplified model of AMFD was implemented into both
the 2D and 3D H-formulation models of HTS CORC cables. Their results were studied with …
dependence (AMFD) for simulating the High-temperature superconducting (HTS) Conductor
on Round Core (CORC) Cables. All these simulations of HTS CORC Cable were performed
based on the finite-element method (FEM) H-formulation model merged into the numerical
platform COMSOL Multi-physics. The simplified model of AMFD was implemented into both
the 2D and 3D H-formulation models of HTS CORC cables. Their results were studied with …
This article presents a simplified mathematical model the anisotropic magnetic field dependence (AMFD) for simulating the High-temperature superconducting (HTS) Conductor on Round Core (CORC) Cables. All these simulations of HTS CORC Cable were performed based on the finite-element method (FEM) H -formulation model merged into the numerical platform COMSOL Multi-physics. The simplified model of AMFD was implemented into both the 2D and 3D H -formulation models of HTS CORC cables. Their results were studied with different conditions, such as the increasing transport current, as well as the gap angle between the superconducting tapes in a single layer. This new simplified AMFD model can give a proper approximation of the actual electromagnetic behaviours of the HTS CORC, but also establish the upper limit of the AC loss calculation, which can be fairly useful for designing future HTS CORC cables.
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