FIELD INHOMOGENEITY EFFECT ON THE QUENCH CURRENT OF LHC DIPOLE MAGNETS

Citation
P. Fabbricatore et al., FIELD INHOMOGENEITY EFFECT ON THE QUENCH CURRENT OF LHC DIPOLE MAGNETS, IEEE transactions on magnetics, 30(4), 1994, pp. 2336-2339
Citations number
8
Categorie Soggetti
Engineering, Eletrical & Electronic","Physics, Applied
ISSN journal
00189464
Volume
30
Issue
4
Year of publication
1994
Part
2
Pages
2336 - 2339
Database
ISI
SICI code
0018-9464(1994)30:4<2336:FIEOTQ>2.0.ZU;2-2
Abstract
The calculation of the maximum field of superconducting magnets is car ried out by comparing the cable critical current line (Ic vs B) with t he magnet load line. In order to take into account the self field effe cts in critical current measurements, both the lines commonly refer to the maximum magnetic field at the conductor. In case of dipole magnet s for high energy physics applications, in which the cable experiences a strong field inhomogeneity, another criterion (the effective field one) can be adopted, considering the field distribution inside the cab le. Furthermore the transition smoothness and the thermal exchange can be considered. The paper describes the results of the calculation obt ained for LHC dipoles: the maximum current value comes out to be a lit tle higher (about 3%) if the new criteria are adopted instead of the m aximum field criterion.