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Thermal analysis and water-cooling design of the CSNS MEBT 324 MHz buncher cavity 被引量:3

Thermal analysis and water-cooling design of the CSNS MEBT 324 MHz buncher cavity
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摘要 At least two bunchers are needed in the 3 MeV H^- Medium Energy Beam Transport (MEBT) line located between RFQ and DTL for the CSNS (China Spallation Neutron Source). A nose-cone geometry has been adopted as the type of buncher cavity for its simplicity, higher impedance and lower risk of multipacting. By making use of the results got from the simulations on the buncher with two-dimension code SUPERFISH, the thermal and structural analyses have been carried out, the process and results to determine the resulting frequency shift due to thermal and structural distortion of the cavity are presented, the water-cooling channel position and the optimum cooling water temperature as well as the tuning method by adjusting the cooling water temperature when the cavity is out of resonance are also determined through the analyses. At least two bunchers are needed in the 3 MeV H^- Medium Energy Beam Transport (MEBT) line located between RFQ and DTL for the CSNS (China Spallation Neutron Source). A nose-cone geometry has been adopted as the type of buncher cavity for its simplicity, higher impedance and lower risk of multipacting. By making use of the results got from the simulations on the buncher with two-dimension code SUPERFISH, the thermal and structural analyses have been carried out, the process and results to determine the resulting frequency shift due to thermal and structural distortion of the cavity are presented, the water-cooling channel position and the optimum cooling water temperature as well as the tuning method by adjusting the cooling water temperature when the cavity is out of resonance are also determined through the analyses.
机构地区 Accelerator Center
出处 《Chinese Physics C》 SCIE CAS CSCD 北大核心 2008年第4期280-284,共5页 中国物理C(英文版)
关键词 buncher cavity thermal and structural analysis water-cooling frequency shift buncher cavity, thermal and structural analysis, water-cooling frequency shift
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参考文献3

  • 1Plostinar C,Clarke-Gayther M.Rebuncher-Bunching RF Cavities and Hybrid Quadrupoles for the RAL Front-End test Stand(FETS) Conf-06-003-HIPPI[]..
  • 2William S Janna.Engineering Heat Transfer[]..
  • 3Hartman N,Rimmer R A.Electromagnetic,Thermal,and Structural Analysis of RF Cavities Using ANSYS[].Proceed- ing of Particle Accelerator Conference.

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