Abstract
The necessity of simulations in design of superconducting dipole magnets is due to the following circumstances. First, the critical current as a function of the magnetic field I c(B) for the multicore superconducting cable which drops strongly requires the knowledge of the value of maximum magnetic field “felt” by its coils for estimation of the working current of the magnet. Second, for choosing the optimal number of coils of the winding (1 or 2) and the working current of the magnet, the ratio of B max for the inner and outer layers of the dipole magnet winding should be known. Since usually the length of the dipole magnet exceeds many times its transverse size, in this work all calculations of B(x, y) are performed in the transverse plane crossing the center of the magnet. The field at the central point is chosen to be B(0, 0) = 2 T (this is the characteristic working value close to the maximum value in the dipole magnet of this type). In this work, the results of calculation of B(x, y) for single-and double-layered windings with 8 and 16 coils from circular hollow cable are presented.
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Original Russian Text © Z.V. Borisovskaya, I.N. Goncharov, 2008, published in Pis’ma v Zhurnal Fizika Elementarnykh Chastits i Atomnogo Yadra, 2008, No. 4 (146), pp. 694–700.
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Borisovskaya, Z.V., Goncharov, I.N. Calculation of magnetic field in the region of the superconducting winding of window frame dipole for particle accelerators. Phys. Part. Nuclei Lett. 5, 413–416 (2008). https://doi.org/10.1134/S1547477108040134
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DOI: https://doi.org/10.1134/S1547477108040134