Coupling losses induced in cable-in-conduit conductors (CICC) when subject to a time-varying magnetic field are a major issue commonly encountered in large fusion tokamaks (e.g., JT-60SA, ITER, DEMO). The knowledge of these losses is crucial to determine the stability of CICC but is yet difficult to achieve analytically (thus in a short computation time) given the specific and complex architecture of these conductors although numerical solutions such as THELMA and JACKPOT already exist. In an attempt to ease the resolution of this problem, we have previously presented a theoretical generic study of a group of elements twisted together (representing a cabling stage of a CICC) and derived the analytical expression of its coupling losses. We h...
The cable-in-conduit superconductors are preferred for applications where the AC losses and stabilit...
Cable-in-conduit conductors (CICCs) for ITER magnets are subjected to fast changing magnetic fields ...
Cable-in-conduit conductors (CICCs) for ITER magnets are subjected to fast changing magnetic fields ...
Coupling losses induced in cable-in-conduit conductors (CICC) when subject to a time-varying magneti...
Coupling losses induced in cable-in-conduit conductors (CICC) when subject to a time-varying magneti...
Coupling losses induced in cable-in-conduit conductors (CICC) when subject to a time-varying magneti...
Coupling losses induced in CICCs when subject to a time-varying magnetic field are a major issue com...
International audienceCable-in-conduit conductors (CICCs) are composed of a large number of strands ...
International audienceCable-in-conduit conductors (CICCs) are composed of a large number of strands ...
With the numerical cable model JackPot it is possible to calculate the interstrand coupling losses, ...
Cable-In-Conduit conductors feature large current-carrying capacity and stability against local and ...
The cable-in-conduit conductors (CICCs) that will be adopted for the ITER central solenoid (CS) coil...
International audienceIn spite of their complex geometry, cable in conduit conductors (CICCs) have t...
International audienceIn spite of their complex geometry, cable in conduit conductors (CICCs) have t...
For upcoming nuclear fusion energy reactors, like the China Fusion Engineering Test Reactor (CFETR) ...
The cable-in-conduit superconductors are preferred for applications where the AC losses and stabilit...
Cable-in-conduit conductors (CICCs) for ITER magnets are subjected to fast changing magnetic fields ...
Cable-in-conduit conductors (CICCs) for ITER magnets are subjected to fast changing magnetic fields ...
Coupling losses induced in cable-in-conduit conductors (CICC) when subject to a time-varying magneti...
Coupling losses induced in cable-in-conduit conductors (CICC) when subject to a time-varying magneti...
Coupling losses induced in cable-in-conduit conductors (CICC) when subject to a time-varying magneti...
Coupling losses induced in CICCs when subject to a time-varying magnetic field are a major issue com...
International audienceCable-in-conduit conductors (CICCs) are composed of a large number of strands ...
International audienceCable-in-conduit conductors (CICCs) are composed of a large number of strands ...
With the numerical cable model JackPot it is possible to calculate the interstrand coupling losses, ...
Cable-In-Conduit conductors feature large current-carrying capacity and stability against local and ...
The cable-in-conduit conductors (CICCs) that will be adopted for the ITER central solenoid (CS) coil...
International audienceIn spite of their complex geometry, cable in conduit conductors (CICCs) have t...
International audienceIn spite of their complex geometry, cable in conduit conductors (CICCs) have t...
For upcoming nuclear fusion energy reactors, like the China Fusion Engineering Test Reactor (CFETR) ...
The cable-in-conduit superconductors are preferred for applications where the AC losses and stabilit...
Cable-in-conduit conductors (CICCs) for ITER magnets are subjected to fast changing magnetic fields ...
Cable-in-conduit conductors (CICCs) for ITER magnets are subjected to fast changing magnetic fields ...