The effective frequency-dependent transverse resistivity experienced by coupling currents in superconducting cables was studied experimentally. The results extend the theory regarding the effective transverse resistivity of soldered strands to the whole AC domain. An accompanying magnetic effect due to the twist of the filaments has been measured and qualitatively explained by a simple model of the filament layer in the strands. It is seen that the coupling current experiences maximum resistivity if the strands are almost untwisted
Fast-cycling magnetic fields, produced by superconducting magnets of modern accelerators, generate c...
The modeling of current distribution and ac losses in multistrand superconducting cables is strictly...
The paper presents a procedure for the numerical computation of the global interstrand resistances m...
the Netherlands. Abstract: The interstrand coupling currents may in many cases produce the major par...
The authors develop a numerical method for calculating the transverse resistivity of superconducting...
The effective transverse resistivity of a range of multi-filamentary Nb3Sn and NbTi strands is measu...
This paper deals with computations of inter-strand coupling losses in superconducting power cables w...
Several approximations are usually introduced in the modelling of current distribution and ac losses...
For many years it has been known that the properties and operating margins of superconducting magnet...
Coupling losses were studied in composite tapes containing superconducting material in the form of t...
A dc transport current was applied to the strands of a Roebel cable at 77 K in liquid nitrogen bath...
Superconductors used in magnet technology could carry extreme currents because of their ability to k...
During the manufacturing process multi-strand conductors are subject to compressive force and rotati...
Proximity-currents between filaments in a multifilamentary wire show a close resemblance with the in...
Models are proposed for two major components of the coupling eddy currents, induced in RTD- HTSC pow...
Fast-cycling magnetic fields, produced by superconducting magnets of modern accelerators, generate c...
The modeling of current distribution and ac losses in multistrand superconducting cables is strictly...
The paper presents a procedure for the numerical computation of the global interstrand resistances m...
the Netherlands. Abstract: The interstrand coupling currents may in many cases produce the major par...
The authors develop a numerical method for calculating the transverse resistivity of superconducting...
The effective transverse resistivity of a range of multi-filamentary Nb3Sn and NbTi strands is measu...
This paper deals with computations of inter-strand coupling losses in superconducting power cables w...
Several approximations are usually introduced in the modelling of current distribution and ac losses...
For many years it has been known that the properties and operating margins of superconducting magnet...
Coupling losses were studied in composite tapes containing superconducting material in the form of t...
A dc transport current was applied to the strands of a Roebel cable at 77 K in liquid nitrogen bath...
Superconductors used in magnet technology could carry extreme currents because of their ability to k...
During the manufacturing process multi-strand conductors are subject to compressive force and rotati...
Proximity-currents between filaments in a multifilamentary wire show a close resemblance with the in...
Models are proposed for two major components of the coupling eddy currents, induced in RTD- HTSC pow...
Fast-cycling magnetic fields, produced by superconducting magnets of modern accelerators, generate c...
The modeling of current distribution and ac losses in multistrand superconducting cables is strictly...
The paper presents a procedure for the numerical computation of the global interstrand resistances m...