We present electromagnetic models aiming to calculate the variation of the inductance in a magnet due to dynamic effects such as the variation of magnetization or the coupling with eddy currents. The models are studied with special regard to the calculation of the inductance in superconducting magnets which are affected by interfilament coupling currents. The developed models have been compared with experimental data coming from tests of prototype Nb3Sn magnets designed for the new generation of accelerators. This work is relevant for the quench protection study of superconducting magnets: quench is an unwanted event, when part of the magnet becomes resistive; in these cases, the current should be discharged as fast as possible, in order to...
Dynamic simulation of superconducting magnets is critical for the design of quench protection system...
This note concerns the main definitions of self-inductance (i.e. differential, secant and energy-bas...
The electrical integrity of superconducting magnets that go through a resistive transition (quench) ...
We present electromagnetic models aiming to calculate the variation of the inductance in a magnet du...
Variations in the transport current of a superconducting magnet cause several types of transitory lo...
The maximum obtainable magnetic induction of accelerator magnets, relying on normal conducting cable...
Modeling accurately electro-thermal transients occurring in a superconducting magnet is challenging....
This paper presents the analysis of some quench tests addressed to study the dynamic effects in the ...
This paper presents the analysis of some quench tests addressed to study the dynamic effects in the ...
This paper presents the analysis of some quench tests addressed to study the dynamic effects in the ...
At present on the basis of significant achievements in the field of high-temperature superconductivi...
New high-field accelerator magnets based on $Nb_3Sn$ superconductors are pushing the boundaries of m...
In this paper, we propose an optimized field/circuit coupling approach for the simulation of magneto...
New high-field accelerator magnets based on Nb3Sn superconductors are pushing the boundaries of magn...
Static and dynamic inductances are ones of the main technical parameters of magnet systems at the de...
Dynamic simulation of superconducting magnets is critical for the design of quench protection system...
This note concerns the main definitions of self-inductance (i.e. differential, secant and energy-bas...
The electrical integrity of superconducting magnets that go through a resistive transition (quench) ...
We present electromagnetic models aiming to calculate the variation of the inductance in a magnet du...
Variations in the transport current of a superconducting magnet cause several types of transitory lo...
The maximum obtainable magnetic induction of accelerator magnets, relying on normal conducting cable...
Modeling accurately electro-thermal transients occurring in a superconducting magnet is challenging....
This paper presents the analysis of some quench tests addressed to study the dynamic effects in the ...
This paper presents the analysis of some quench tests addressed to study the dynamic effects in the ...
This paper presents the analysis of some quench tests addressed to study the dynamic effects in the ...
At present on the basis of significant achievements in the field of high-temperature superconductivi...
New high-field accelerator magnets based on $Nb_3Sn$ superconductors are pushing the boundaries of m...
In this paper, we propose an optimized field/circuit coupling approach for the simulation of magneto...
New high-field accelerator magnets based on Nb3Sn superconductors are pushing the boundaries of magn...
Static and dynamic inductances are ones of the main technical parameters of magnet systems at the de...
Dynamic simulation of superconducting magnets is critical for the design of quench protection system...
This note concerns the main definitions of self-inductance (i.e. differential, secant and energy-bas...
The electrical integrity of superconducting magnets that go through a resistive transition (quench) ...