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 (%)