Page 320 - Fundamentals of Magnetic Thermonuclear Reactor Design
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300     Fundamentals of Magnetic Thermonuclear Reactor Design
                    HCLL EU HCML Repub-  DEMO-S   LLCBIndia lic of Korea  Russia DCLL USA  2500 2500–3500  2500–  2500 2200–3300  3500  0.5 (peak)  0.4 0.5 (peak)  0.5 (peak)  <1.0  1.7  2.7 3.0 (peak)  2.4 (peak)  >2.0  Low activated  Oxide-hardened   Alloy V– Ferritic steel  Ferritic/mar-  ferritic/martens- ferritic steel   Cr–Ti  F82H or


                    HCSB Japan  —  0.5  3.5  Ferritic steel   F82H  —  Li 2 TiO 3  He (10)  220/500  >1.05 (90%)  22.1–35.3

              TABLE 10.2 Characteristics of the Gen-1 Blankets




                 DEMO-S   Russia  2500–3500  0.4  2.7  Ferritic/mar-  tensitic steel  9CrMoVNb  —  Li 4 SiO 4  He (10)  300/500  1.06 (40%)  40





                    HCPB EU  2200–3300  0.5 (peak)  2.4 (peak)  Ferritic/mar-  tensitic steel   Eurofer  550  Li 4 SiO 4  He (8)  300/500  1.14 (40%)  36




                    Parameters  Fusion power   (MW)  Max. surf.   heat flux   (MW/m 2 )  Max. neutron   FW load    (MW/m 2 )  Structural   material  FW T max  (°С)  Tritium   breeder  Coolant,    P (MPa)  Coolant inlet/   outlet tem-  perature (°C)  TBR ( 6 Li   enrichment)  Conversion   efficiency (%)
   315   316   317   318   319   320   321   322   323   324   325