DocumentCode :
904822
Title :
Heat Transfer, Thermal Stress Analysis and the Dynamic Behaviour of High Power RF Structures
Author :
McKeown, J. ; Labrie, J.-P.
Author_Institution :
Atomic Energy of Canada Limited, Research Company Chalk River Nuclear Laboratories Chalk River, Ontario, Canada KOJ 1JO
Volume :
30
Issue :
4
fYear :
1983
Firstpage :
3593
Lastpage :
3595
Abstract :
A general purpose finite element computer code called MARC is used to calculate the temperature distribution and dimensional changes in linear accelerator rf structures. Both steady state and transient behaviour are examined with the computer model. Combining results from MARC with the cavity evaluation computer code SUPERFISH, the static and dynamic behaviour of a structure under power is investigated. Structure cooling is studied to minimize loss in shunt impedance and frequency shifts during high power operation. Results are compared with an experimental test carried out on a cw 805 MHz on-axis coupled structure at an energy gradient of 1.8 MeV/m. The model has also been used to compare the performance of on-axis and coaxial structures and has guided the mechanical design of structures suitable for average gradients in excess of 2.0 MeV/m at 2.45 GHz.
Keywords :
Cogeneration; Cooling; Distributed computing; Finite element methods; Heat transfer; Linear accelerators; Radio frequency; Steady-state; Temperature distribution; Thermal stresses;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.1983.4336736
Filename :
4336736
Link To Document :
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