DocumentCode :
1067449
Title :
Correlations between field quality and geometry of components in the collared coils of the LHC main dipoles
Author :
Bellesia, B. ; Remondino, V. ; Scandale, W. ; Todesco, E. ; Vollinger, C.
Author_Institution :
CERN, Geneva, Switzerland
Volume :
14
Issue :
2
fYear :
2004
fDate :
6/1/2004 12:00:00 AM
Firstpage :
219
Lastpage :
222
Abstract :
The Large Hadron Collider (LHC) (1995), a proton-proton superconducting accelerator, will consist of about 8400 superconducting magnet units, all operating in superfluid helium at a temperature of 1.9 K. The design of the superconducting main dipole magnets for the LHC is guided by the requirement of an extremely high field quality in the magnet aperture which is mainly defined by the layout of the superconducting coil and the position of the conductors. In order to avoid conductor movements within the magnet cross-section, the superconducting coils are held in place by surrounding stainless steel collars. In this paper, we review the dependence of field harmonics in the LHC main dipoles on dimensions of the hardware components of the collared coils. An analysis of the dimensional measurements of these components which are used in the collared coils produced so far is given. Sensitivity tables which are worked out through a coupled magneto-static model give the variation of the multipoles on collars, copper wedge dimensions and cable geometry. A Monte Carlo method is used to simulate the effects of possible errors on the multipoles.
Keywords :
Monte Carlo methods; accelerator magnets; magnetostatics; materials testing; nondestructive testing; proton accelerators; storage rings; superconducting coils; superconducting magnets; synchrotrons; 1.9 K; He; LHC main dipoles; Large Hadron Collider; Monte Carlo method; cable geometry; collared coils; components geometry; conductors position; copper wedge dimensions; coupled magneto-static model; field harmonics; field quality; magnet aperture; magnet cross-section; magnetic field measurements; multipoles variation; proton-proton superconducting accelerator; sensitivity tables; stainless steel collars; superconducting coil; superconducting magnet units; superconducting main dipole magnets; superfluid helium; Accelerator magnets; Apertures; Conductors; Geometry; Helium; Large Hadron Collider; Proton accelerators; Superconducting coils; Superconducting magnets; Temperature; Field quality; magnetic measurements; multipoles; superconducting magnets;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2004.829052
Filename :
1324775
Link To Document :
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