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RIS citation export for THPO015: R&D Studies on A 177.6 MHz 1:4 Scale Boat Shape Prototype RF Cavity for the 2 GeV CW FFA

TY  - CONF
AU  - Pei, S.
AU  - Guan, L.L.
AU  - Jia, Y.
AU  - Jin, Z.J.
AU  - Li, B.
AU  - Li, M.
AU  - Liu, J.Y.
AU  - Pan, G.F.
AU  - Wang, F.
AU  - Wang, L.
AU  - Wang, Y.
AU  - Xia, S.B.
AU  - Xing, Y.
AU  - Yang, G.
AU  - Yin, Z.G.
AU  - Zhang, S.P.
AU  - Zhang, T.J.
AU  - Zhu, X.F.
ED  - Zhang, Tianjue
ED  - Schaa, Volker R.W.
ED  - An, Shizhong
ED  - Kiselev, Daniela
ED  - Liu, Yuntao
ED  - Li, Pengzhan
TI  - R&D Studies on A 177.6 MHz 1:4 Scale Boat Shape Prototype RF Cavity for the 2 GeV CW FFA
J2  - Proc. of CYCLOTRONS2022, Beijing, China, 05-09 December 2022
CY  - Beijing, China
T2  - International Conference on Cyclotrons and their Applications
T3  - 23
LA  - english
AB  - A proton circular accelerator complex composed of a 100 MeV separated radial sector cyclotron, an 800 MeV separated spiral sector cyclotron and a 2 GeV FFA was proposed and is being studied at CIAE. To satisfy the beam dynamics requirements of the FFA, NC RF cavity with high Q and R will be adopted. It is found that the boat shape cavity is the most promising candidate. Therefore, R&D on a 177.6 MHz 1:4 scale boat shape prototype cavity is being carried out to study all aspects of developing such a high-power cavity. In this scenario, self-consistent multi-physics coupled simulation study with ANSYS HFSS and Workbench was carried out. This paper describes the method to deal with a mechanical model including hundreds of bodies in the FEM analysis and shows the simulation results. In addition, the manufacturing technology and some testing results are also presented.
PB  - JACoW Publishing
CP  - Geneva, Switzerland
SP  - 338
EP  - 341
KW  - cavity
KW  - proton
KW  - simulation
KW  - cyclotron
KW  - GUI
DA  - 2023/10
PY  - 2023
SN  - 2673-5482
SN  - 978-3-95450-212-7
DO  - doi:10.18429/JACoW-CYCLOTRONS2022-THPO015
UR  - https://jacow.org/cyclotrons2022/papers/thpo015.pdf
ER  -