Localization of electrical insulation failures in superconducting collared coils by analysis of the distortion of a pulsed magnetic field
Piotr Komorowski, D. Tommasini
Warsaw University of Technology European Organization for Nuclear Research
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The localization of possible electrical faults in superconducting accelerator magnets may, in most eases, be a complex, expensive and time-consuming process. In particular, inter-turn short circuits and failures of the ground insulation are well detectable when the magnet is collared, but often disappear after disassembly for repair due to the release of the pre-stress in the coils. The fault localization method presented in this paper is based on the measurement and analysis of the magnetic field generated inside the magnet aperture by a high voltage pulse. The presence of the fault modifies the distribution of the current in the coils and produces a distortion of the magnetic field. The described method aims at locating both the longitudinal and azimuthal position of the fault-affected area. The test method, the transient case FEM models and the implemented experimental set-up are presented and discussed for the LHC dipole models.
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工程Superconducting Materials and Applications
Particle accelerators and beam dynamics · Magnetic confinement fusion research
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