Accelerator magnets for future particle accelerators are designed to work with as high energy densities as possible to achieve high fields and compact magnet designs. A key factor limiting the energy density is given by the protection in case of a quench: If a quench occurs, the stored energy must be first absorbed by the windings, and the magnet temperature shall not exceed a given limit. In this paper, we present a back-of-the-envelope method for estimating the magnet's maximum temperature after a quench based on its stored energy. The method combines the existing concepts of MIIT (Mega*current*current*time), time margin, and protection delay to allow for an easy and direct calculation of the hot-spot temperature. We apply the proposed me...
The goal of the High Luminosity LHC project is upgrading the LHC in order to increase its luminosity...
n 2023, the LHC luminosity will be increased, aiming at reaching 3000 fb-1 integrated over ten years...
International audienceThe EuroCirCol collaboration is designing a 16 T Nb3Sn dipole that can be used...
The optimal design of the next generation of accelerator magnets calls for a high current density in...
Superconducting accelerator magnets with increasingly high magnetic fields are being designed to imp...
The maximum obtainable magnetic induction of accelerator magnets, relying on normal conducting cable...
Email Print Request Permissions Save to Project A new and promising method for the prot...
This paper presents a recently developed Code for Heater Delay Analysis (CoHDA), which is a tool for...
The US LARP collaboration has been pursuing the development of Nb3Sn technology for the interaction ...
The quadrupole magnets for the LHC upgrade to higher luminosity are jointly developed by CERN and US...
Loss of the superconducting state, namely quench, is a dangerous event for superconducting magnets. ...
Protection of large high-field, high-energy accelerator magnets is very challenging with current tec...
The goal of the High Luminosity LHC project is upgrading the LHC in order to increase its luminosity...
Several high field Nb{sub 3}Sn magnets of different design are under development for future particle...
A new and promising method for the protection of superconducting high-field magnets is developed and...
The goal of the High Luminosity LHC project is upgrading the LHC in order to increase its luminosity...
n 2023, the LHC luminosity will be increased, aiming at reaching 3000 fb-1 integrated over ten years...
International audienceThe EuroCirCol collaboration is designing a 16 T Nb3Sn dipole that can be used...
The optimal design of the next generation of accelerator magnets calls for a high current density in...
Superconducting accelerator magnets with increasingly high magnetic fields are being designed to imp...
The maximum obtainable magnetic induction of accelerator magnets, relying on normal conducting cable...
Email Print Request Permissions Save to Project A new and promising method for the prot...
This paper presents a recently developed Code for Heater Delay Analysis (CoHDA), which is a tool for...
The US LARP collaboration has been pursuing the development of Nb3Sn technology for the interaction ...
The quadrupole magnets for the LHC upgrade to higher luminosity are jointly developed by CERN and US...
Loss of the superconducting state, namely quench, is a dangerous event for superconducting magnets. ...
Protection of large high-field, high-energy accelerator magnets is very challenging with current tec...
The goal of the High Luminosity LHC project is upgrading the LHC in order to increase its luminosity...
Several high field Nb{sub 3}Sn magnets of different design are under development for future particle...
A new and promising method for the protection of superconducting high-field magnets is developed and...
The goal of the High Luminosity LHC project is upgrading the LHC in order to increase its luminosity...
n 2023, the LHC luminosity will be increased, aiming at reaching 3000 fb-1 integrated over ten years...
International audienceThe EuroCirCol collaboration is designing a 16 T Nb3Sn dipole that can be used...