CLIQ, the Coupling-Loss Induced Quench system, is a new method for protecting superconducting magnets after a sudden transition to the normal state. It offers significant advantages over the conventional technology due to its effective mechanism for heating the superconductor relying on coupling loss and its robust electrical design, which makes it more reliable and less interfering with the coil winding process. The analysis of the electro-magnetic and thermal transients during and after a CLIQ discharge allows identifying the system parameters that affect the system performance and defining guidelines for implementing this technology on coils of various characteristics. Most existing superconducting magnets can be protected by CLIQ as con...
AbstractThe recently developed Coupling-Loss-Induced Quench (CLIQ) protection system is a new method...
A new protection system for superconducting magnets called coupling-loss induced quench system (CLIQ...
Abstract: Protection against the effects of a quench is a crucial challenge for 16-T-class supercond...
CLIQ, the Coupling-Loss Induced Quench system, is a new method for protecting superconducting magnet...
CLIQ, the Coupling-Loss Induced Quench system, is a new method for protecting superconducting magnet...
The recently developed Coupling-Loss-Induced Quench (CLIQ) protection system is a new method for ini...
The coupling-loss induced quench system (CLIQ) is an innovative method for the protection of high-fi...
The coupling-loss induced quench system (CLIQ) is an innovative method for the protection of high-fi...
The coupling-loss induced quench system (CLIQ) is an innovative method for the protection of high-fi...
The coupling-loss-induced quench (CLIQ) is an innovative system for the protection of superconductin...
The coupling-loss-induced quench (CLIQ) is an innovative system for the protection of superconductin...
Conventional quench protection systems for high-magnetic-field superconducting magnets are based on ...
The recently developed Coupling-Loss-Induced Quench (CLIQ) protection system is a new method for ini...
The recently developed Coupling-Loss-Induced Quench (CLIQ) protection system is a new method for ini...
The recently developed Coupling-Loss-Induced Quench (CLIQ) protection system is a new method for ini...
AbstractThe recently developed Coupling-Loss-Induced Quench (CLIQ) protection system is a new method...
A new protection system for superconducting magnets called coupling-loss induced quench system (CLIQ...
Abstract: Protection against the effects of a quench is a crucial challenge for 16-T-class supercond...
CLIQ, the Coupling-Loss Induced Quench system, is a new method for protecting superconducting magnet...
CLIQ, the Coupling-Loss Induced Quench system, is a new method for protecting superconducting magnet...
The recently developed Coupling-Loss-Induced Quench (CLIQ) protection system is a new method for ini...
The coupling-loss induced quench system (CLIQ) is an innovative method for the protection of high-fi...
The coupling-loss induced quench system (CLIQ) is an innovative method for the protection of high-fi...
The coupling-loss induced quench system (CLIQ) is an innovative method for the protection of high-fi...
The coupling-loss-induced quench (CLIQ) is an innovative system for the protection of superconductin...
The coupling-loss-induced quench (CLIQ) is an innovative system for the protection of superconductin...
Conventional quench protection systems for high-magnetic-field superconducting magnets are based on ...
The recently developed Coupling-Loss-Induced Quench (CLIQ) protection system is a new method for ini...
The recently developed Coupling-Loss-Induced Quench (CLIQ) protection system is a new method for ini...
The recently developed Coupling-Loss-Induced Quench (CLIQ) protection system is a new method for ini...
AbstractThe recently developed Coupling-Loss-Induced Quench (CLIQ) protection system is a new method...
A new protection system for superconducting magnets called coupling-loss induced quench system (CLIQ...
Abstract: Protection against the effects of a quench is a crucial challenge for 16-T-class supercond...