Power Flattening and Rejuvenation of PWR Spent Fuel Blanket for Hybrid Fusion-Fission Reactor
Daogang Lu
Abstract
Daogang Lu
Abstract
The hybrid fusion-fission reactor has advantages of breeding of the nuclear fuel and transmutation of the long-life nuclear waste and having inherent safety.Meanwhile,the engineering and technological demand of hybrid reactor is significantly reduced comparing with that of pure fusion reactor.A generating electricity blanket concept using the PWR spent fuel directly was proposed,which was based on ITER parameter level achieved.Different volume fractions of the fuel in blanket enabled to realize a power flattening in the fissile zone.The results show that the peak-to-average power factor becomes less than no power flattening,and the output power of the fuel zone raises more than 21.7%.At the end of the operation,the maximum fuel enrichment is 5.23%.The blanket is feasible from the neutronics viewpoint.
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The hybrid fusion-fission reactor has advantages of breeding of the nuclear fuel and transmutation of the long-life nuclear waste and having inherent safety.Meanwhile,the engineering and technological demand of hybrid reactor is significantly reduced comparing with that of pure fusion reactor.A generating electricity blanket concept using the PWR spent fuel directly was proposed,which was based on ITER parameter level achieved.Different volume fractions of the fuel in blanket enabled to realize a power flattening in the fissile zone.The results show that the peak-to-average power factor becomes less than no power flattening,and the output power of the fuel zone raises more than 21.7%.At the end of the operation,the maximum fuel enrichment is 5.23%.The blanket is feasible from the neutronics viewpoint.
Key concepts: Blanket, Fissile material, Hybrid reactor, Nuclear engineering, Flattening, Neutron transport, Nuclear transmutation, Fusion power