Page 340 - Fundamentals of Magnetic Thermonuclear Reactor Design
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316     Fundamentals of Magnetic Thermonuclear Reactor Design







                           India  1.66 ×    0.48 × 0.57  0.85  PbLi + Li 2 TiO 3  350–460  1.2  90  LAFMS  He + PbLi  8  350–480 (He)


                           Rep. of Korea  1.72 ×    0.5 × 0.44  0.793  Li  338–393  —  40  LAFMS  Не  8  300–338











                           Russia  1.72 ×    0.51 × 0.02  0.65  Li  250–350 (450–550)  0.5  90  V–Cr–Ti  Li  0.5  250–550








                           USA  1.86 ×    0.65 × 0.41  1.34  Pb–17Li  360–470  2  90  F82H или Eurofer  Не + PbLi  8  360–419




                           China  1.83 ×    0.63 × 0.48  0.89  Pb–17Li  —  —  90  LAFMS  Не  8  340–420


                        TABLE 10.6 Liquid-Metal TBM Characteristics

                           China  1.83 ×    0.63 × 0.48  0.92  Pb–17Li  480–700  1  90  LAFMS  Не + PbLi  8  340–420 a Liquid metal in BZ flows radially in the European project and poloidally in all other projects.




                              1.84 ×    0.63×0.63  Pb–17Li  300–480  Eurofer  300–410
                           EU        0.93     <1  90   Не  8




                           Parameters  Dimensions (m)  (poloidal×toroidal         ×radial)  Power released in   TBM (kW)  Breeder a    emperature range   T     (°C)  Pressure (MPa)     6 Li enrichment (%)     Structural material  Primary coolant  Pressure (MPa)       emperature range   T     (°C)
   335   336   337   338   339   340   341   342   343   344   345