DocumentCode :
2901482
Title :
Electro-thermal analysis of 250 kW coaxial RF window at 350 MHz
Author :
Vyas, S.K. ; Maurya, S. ; Shekhawat, N. ; Singh, V.V.P.
Author_Institution :
Central Electron. Eng. Res. Inst., CSIR, Pilani, India
fYear :
2011
fDate :
21-24 Feb. 2011
Firstpage :
163
Lastpage :
164
Abstract :
This paper presents electromagnetic and thermal simulation of a 250 kW 350 MHz balanced choke type coaxial RF window including T-bar transition using CST Microwave Studio and ANSYS. The S-parameter analysis of the coaxial widow, using 3D Microwave Studio, has revealed that a match can be found at any frequency between 300 MHz and 1 GHz by suitably tailoring the choke depth independently. Sensitivity analysis has also been carried out to fix manufacturing tolerances. It is found that a deviation of less than 0.1 mm in the designed value of choke depth will be tolerable. An integrated design of coaxial window and T-bar transition has been optimized. Using ANSYS3D, electric field, dielectric loss, surface loss, and temperature distributions in the window have been found for 350 MHz power transmission up to 1 MW. For the power transmission of 250 kW, maximum saturated temperature has been found to be 34°C at the center of the alumina ceramic disc with edge-cooling by water. A cold test model of this window assembly is in the advanced stage of development.
Keywords :
S-parameters; UHF tubes; coaxial waveguides; dielectric losses; electric fields; klystrons; microwave tubes; thermal analysis; waveguide transitions; ANSYS; CST microwave studio; S-parameter analysis; T-bar transition; alumina ceramic disc; balanced choke type coaxial RF window; cold test model; dielectric loss; edge-cooling; electric field; electro-thermal analysis; electromagnetic; frequency 300 MHz to 1 GHz; power 250 kW; power transmission; sensitivity analysis; surface loss; temperature 34 degC; temperature distributions; Electromagnetic waveguides; Electromagnetics; Inductors; Proton accelerators; Thermal analysis; Waveguide transitions; Electro-thermal simulation; T-bar transition; coaxial rf window; high energy accelerators; klystron;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vacuum Electronics Conference (IVEC), 2011 IEEE International
Conference_Location :
Bangalore
Print_ISBN :
978-1-4244-8662-5
Type :
conf
DOI :
10.1109/IVEC.2011.5746926
Filename :
5746926
Link To Document :
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