Spurred by the question of the maximum allowable energy for the operation of the Large Hadron Collider (LHC), we have progressed in the understanding of the thermo-electric behavior of the 13 kA superconducting bus bars interconnecting its main magnets. A deep insight of the underlying mechanisms is required to ensure the protection of the accelerator against undesired effects of resistive transitions. This is especially important in case of defective interconnections which can jeopardize the operation of the whole LHC. In this paper we present a numerical model of the interconnections between the main dipole and quadrupole magnets, validated against experimental tests of an interconnection sample with a purposely built-in defect. We consid...
Following the QPS review in February 2009, a potential source of problems with the main circuit bus ...
After the incident of September 2008, the operational beam energy of the LHC has been set to 3.5 TeV...
The Large Hadron Collider (LHC) main superconducting circuits are powered by cryogenic electrical fe...
none5siSpurred by the question of the maximum allowable energy for the operation of the Large Hadron...
The interconnections between Large Hadron Collider (LHC) main dipole and quadrupole magnets are made...
The interconnections between Large Hadron Collider (LHC) main dipole and quadrupole magnets are made...
The interconnections between the superconducting main dipole and main quadrupole magnets are made of...
The incident in the LHC in September 2008 occurred in an interconnection between two magnets of the ...
CERN is performing a systematic analysis of the interconnecting bus bars of the Large Hadron Collide...
The interconnections between the LHC main magnets are made of soldered joints (splices) of two super...
At each interconnection between LHC main magnets a low-resistance solder joint must be made between ...
The accident in the LHC in September 2008 occurred in an interconnection between two magnets of the ...
After the incident of September 2008, the operational beam energy of the LHC has been set to 3.5 Te...
Triggered by the incident in the LHC in September 2008, the thermo-electrical stability of the 10,00...
The electrical interconnections between the LHC main magnets are made of soldered joints (splices) o...
Following the QPS review in February 2009, a potential source of problems with the main circuit bus ...
After the incident of September 2008, the operational beam energy of the LHC has been set to 3.5 TeV...
The Large Hadron Collider (LHC) main superconducting circuits are powered by cryogenic electrical fe...
none5siSpurred by the question of the maximum allowable energy for the operation of the Large Hadron...
The interconnections between Large Hadron Collider (LHC) main dipole and quadrupole magnets are made...
The interconnections between Large Hadron Collider (LHC) main dipole and quadrupole magnets are made...
The interconnections between the superconducting main dipole and main quadrupole magnets are made of...
The incident in the LHC in September 2008 occurred in an interconnection between two magnets of the ...
CERN is performing a systematic analysis of the interconnecting bus bars of the Large Hadron Collide...
The interconnections between the LHC main magnets are made of soldered joints (splices) of two super...
At each interconnection between LHC main magnets a low-resistance solder joint must be made between ...
The accident in the LHC in September 2008 occurred in an interconnection between two magnets of the ...
After the incident of September 2008, the operational beam energy of the LHC has been set to 3.5 Te...
Triggered by the incident in the LHC in September 2008, the thermo-electrical stability of the 10,00...
The electrical interconnections between the LHC main magnets are made of soldered joints (splices) o...
Following the QPS review in February 2009, a potential source of problems with the main circuit bus ...
After the incident of September 2008, the operational beam energy of the LHC has been set to 3.5 TeV...
The Large Hadron Collider (LHC) main superconducting circuits are powered by cryogenic electrical fe...