DocumentCode :
2883876
Title :
RF-thermal-structural analysis of a waveguide higher order mode absorber
Author :
Cheng, Gordon ; Daly, E.F. ; Rimmer, R.A. ; Stirbet, M. ; Vogel, Lawrence ; Wang, Huifang ; Wilson, K.M.
Author_Institution :
Jefferson Lab, Newport News
fYear :
2007
fDate :
25-29 June 2007
Firstpage :
605
Lastpage :
607
Abstract :
For an ongoing high current cryomodule project, a total of 5 higher order mode (HOM) absorbers are required per cavity. The load is designed to absorb Radio Frequency (RF) heat induced by HOMs in a 748.5MHz cavity. Each load is targeted at a 4 kW dissipation capability. Water cooling is employed to remove the heat generated in ceramic tiles and by surface losses on the waveguide walls. A sequentially coupled RF-thermal-structural analysis was developed in ANSYS to optimize the HOM load design. Frequency-dependent dielectric material properties measured from samples and RF power spectrum calculated by the beam-cavity interaction codes were considered. The coupled field analysis capability of ANSYS avoided mapping of results between separate RF and thermal/structural simulation codes. For verification purposes, RF results obtained from ANSYS were compared to those from MAFIA, HFSS, and Microwave Studio. Good agreement was reached and this confirms that multiple-field coupled analysis is a desirable choice in analysis of HOM loads. Similar analysis could be performed on other particle accelerator components where distributed RF heating and surface current induced losses are inevitable.
Keywords :
accelerator RF systems; accelerator cavities; RF power spectrum; RF-thermal-structural analysis; beam-cavity interaction codes; frequency-dependent dielectric material properties; high current cryomodule project; radio frequency heat absorption; water cooling; waveguide higher order mode absorber; Ceramics; Cooling; Design optimization; Dielectric materials; Dielectric measurements; Power measurement; Radio frequency; Surface waves; Tiles; Water heating;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Particle Accelerator Conference, 2007. PAC. IEEE
Conference_Location :
Albuquerque, NM
Print_ISBN :
978-1-4244-0916-7
Type :
conf
DOI :
10.1109/PAC.2007.4440293
Filename :
4440293
Link To Document :
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