A Conductor on Round Core (CORC®) cable wound with a high temperature superconductor is an important cable concept for high current density applications. The design of a CORC cable makes understanding its electromagnetic performance—for example its AC losses—challenging. This paper presents a thorough study of CORC cables by combining experimental and numerical methods. In particular, it focuses on understanding how the cable structure influences the magnetization losses and on how these can be reduced. A novelty of this paper lies in the use of a new T-A formulation, which, for the first time, is employed for three-dimensional modelling of a CORC cable with real geometry. The use of the new T-A formulation in finite element software enable...
High-temperature superconducting (HTS) triaxial conductor on round core (CORC) cable is a potential ...
This article presents a simplified mathematical model the anisotropic magnetic field dependence (AMF...
This thesis aims to understand the macroscopic electromagnetic behaviour of type-II superconducting ...
Conductor on round core (CORC) cable wound with high temperature superconductors (HTS) is an importa...
The High Temperature Superconducting (HTS) Conductor on Round Core (CORC) cables have been widely ut...
The Conductor on Rounded Core (CORC) cables manufactured by Advanced Conductor Technologies with cur...
The Conductor on Rounded Core (CORC) cables manufactured by Advanced Conductor Technologies with cur...
Superconducting Conductor on Round Core (CORC) cables fab-ricated from high temperature superconduct...
High-current high temperature superconducting (HTS) cables have been developed for use in HTS power ...
Conductor on round core (CORC) cables wound by higherature superconducting (HTS) tapes have received...
High-temperature superconducting (HTS) triaxial conductor on round core (CORC) cable is a potential ...
A conductor on round core (CORC) cable wound with REBCO tapes is promising for high current density ...
This paper presents numerical study on magnetization characteristics of conductor on round core (COR...
The HTSConductor on Round Core (CORC) Cables have been widely recognized as the proper candidate for...
The HTSConductor on Round Core (CORC) Cables have been widely recognized as the proper candidate for...
High-temperature superconducting (HTS) triaxial conductor on round core (CORC) cable is a potential ...
This article presents a simplified mathematical model the anisotropic magnetic field dependence (AMF...
This thesis aims to understand the macroscopic electromagnetic behaviour of type-II superconducting ...
Conductor on round core (CORC) cable wound with high temperature superconductors (HTS) is an importa...
The High Temperature Superconducting (HTS) Conductor on Round Core (CORC) cables have been widely ut...
The Conductor on Rounded Core (CORC) cables manufactured by Advanced Conductor Technologies with cur...
The Conductor on Rounded Core (CORC) cables manufactured by Advanced Conductor Technologies with cur...
Superconducting Conductor on Round Core (CORC) cables fab-ricated from high temperature superconduct...
High-current high temperature superconducting (HTS) cables have been developed for use in HTS power ...
Conductor on round core (CORC) cables wound by higherature superconducting (HTS) tapes have received...
High-temperature superconducting (HTS) triaxial conductor on round core (CORC) cable is a potential ...
A conductor on round core (CORC) cable wound with REBCO tapes is promising for high current density ...
This paper presents numerical study on magnetization characteristics of conductor on round core (COR...
The HTSConductor on Round Core (CORC) Cables have been widely recognized as the proper candidate for...
The HTSConductor on Round Core (CORC) Cables have been widely recognized as the proper candidate for...
High-temperature superconducting (HTS) triaxial conductor on round core (CORC) cable is a potential ...
This article presents a simplified mathematical model the anisotropic magnetic field dependence (AMF...
This thesis aims to understand the macroscopic electromagnetic behaviour of type-II superconducting ...