学位论文详细信息
Subcritical transmutation of spent nuclear fuel
Fast reactor;Fusion-fission hybrid;Fuel cycle;Transmutation
Sommer, Christopher Michael ; Nuclear Engineering
University:Georgia Institute of Technology
Department:Nuclear Engineering
关键词: Fast reactor;    Fusion-fission hybrid;    Fuel cycle;    Transmutation;   
Others  :  https://smartech.gatech.edu/bitstream/1853/41205/1/sommer_christopher_m_201108_phd.pdf
美国|英语
来源: SMARTech Repository
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【 摘 要 】

A series of fuel cycle simulations were performed using CEA's reactor physics code ERANOS 2.0 to analyze the transmutation performance of the Subcritical Advanced Burner Reactor (SABR).SABR is a fusion-fission hybrid reactor that combines the leading sodium cooled fast reactor technology with the leading tokamak plasma technology based on ITER physics.Two general fuel cycles were considered for the SABR system.The first fuel cycle is one in which all of the transuranics from light water reactors are burned in SABR.The second fuel cycle is a minor actinide burning fuel cycle in which all of the minor actinides and some of the plutonium produced in light water reactors are burned in SABR, with the excess plutonium being set aside for starting up fast reactors in the future.The minor actinide burning fuel cycle is being considered in European Scenario Studies. The fuel cycles were evaluated on the basis of TRU/MA transmutation rate, power profile, accumulated radiation damage, and decay heat to the repository.Each of the fuel cycles are compared against each other, and the minor actinide burning fuel cycles are compared against the EFIT transmutation system, and a low conversion ratio fast reactor.

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