DocumentCode :
1455767
Title :
Deformation Calculation and Optimal Design of the Compact Magnet for CYCIAE-100
Author :
Zhang, Tianjue ; Yang, Jianjun ; Chen, Rongfan ; Wei, Sumin ; Zhong, Junqing ; Wang, Chuan
Author_Institution :
China Inst. of Atomic Energy, Beijing, China
Volume :
20
Issue :
3
fYear :
2010
fDate :
6/1/2010 12:00:00 AM
Firstpage :
1944
Lastpage :
1947
Abstract :
The compact main magnet structure of CYCIAE-100, the 100 MeV high intensity cyclotron, causes the magnetic filed on the median plane to be highly sensitive to the deformation of the main magnet. The major factors that determine the structural deformation of the magnet are attributed to the mechanical properties of the pure iron, the magnet structure and the external force load. The work presented in this paper adopts the virtual work method and the Maxwell stress tensor method to precisely calculate the electromagnetic force exerted on the main magnet by the code developed by CIAE in combination with other existing codes, e.g., TOSCA and ANSYS. An in-depth analysis and comparison on the force are carried out. On that basis, five different solutions of the main magnet structure are put forward. Then numerical simulation of the magnetic field and the mechanical stress are conducted and the adoption of uneven-height top/bottom yokes is nailed down in the optimal design.
Keywords :
accelerator magnets; cyclotrons; deformation; electromagnetic forces; magnetic fields; CYCIAE-100; China Institute of Atomic Energy; Maxwell stress tensor method; compact magnet; deformation calculation; electromagnetic force; external force load; high intensity cyclotron; magnetic field; mechanical stress; numerical simulation; optimal design; pure iron mechanical properties; virtual work method; Cyclotron; electromagnetic force; optimal design; structural deformation;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2010.2042293
Filename :
5439707
Link To Document :
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