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Preliminary Design and Analysis of ITER In-Wall Shielding

Preliminary Design and Analysis of ITER In-Wall Shielding
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摘要 ITER in-wall shielding (IIS) is situated between the doubled shells of the ITER Vacuum Vessel (IVV). Its main functions are applied in shielding neutron, gamma-ray and toroidal field ripple reduction. The structure of IIS has been modelled according to the IVV design criteria which has been updated by the ITER team (IT). Static analysis and thermal expansion analysis were performed for the structure. Thermal-hydraulic analysis verified the heat removal capability and resulting temperature, pressure, and velocity changes in the coolant flow. Consequently, our design work is possibly suitable as a reference for IT's updated or final design in its next step. ITER in-wall shielding (IIS) is situated between the doubled shells of the ITER Vacuum Vessel (IVV). Its main functions are applied in shielding neutron, gamma-ray and toroidal field ripple reduction. The structure of IIS has been modelled according to the IVV design criteria which has been updated by the ITER team (IT). Static analysis and thermal expansion analysis were performed for the structure. Thermal-hydraulic analysis verified the heat removal capability and resulting temperature, pressure, and velocity changes in the coolant flow. Consequently, our design work is possibly suitable as a reference for IT's updated or final design in its next step.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2007年第1期94-100,共7页 等离子体科学和技术(英文版)
基金 the National 973 program of China(No.2004CB720704)
关键词 ITER VV in-wall shielding shielding blocks (SB) finite element (FE) structure analysis thermal/hydraulic analysis ITER VV, in-wall shielding, shielding blocks (SB), finite element (FE), structure analysis, thermal/hydraulic analysis
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参考文献6

  • 1Rebut P H. 1995, Fusion Engineering and Design,30(1): 85-118(34)
  • 2Aymar R, Barabaschi P, Shimomura Y. 2002, Plasma Physics and Control Fusion, 44(5): 519-565
  • 3Ioki K. ITER Design Description Document 1.5 Vacuum Vessel. G 15 DDD 04 01-06-25 R0.1, Boltzmannstr, German : ITER Garching Joint Work Site,2001.1-35
  • 4Ioki K, Barabaschi P, Bruno L, et al. 2001, Nuclear Fusion, 41(3): 269-275
  • 5Barabash V. Summary of Vacuum Vessel Materials Data For Structure Analysis. G74 MA 15 04-05-07R0.1, Boltzmannstr, German : ITER Garching Joint Work Site, 2004. 1-36
  • 6Kalinin G. Structure Design Criteria for ITER Genernal Section(SDC-G). Version 1, G74 MA 6 R0.1, Boltzmannstr, German : ITER Garching Joint Work Site,2004. 1-19

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