This work aimed to develop accelerator-driven systems (ADSs) with a subcritical thorium assembly for fuel breeding and clean energy utilization by using several seed fuels. The ADS reactor core was loaded with three different fuel types, namely, reprocessed fuel, UN, and UO2(seed fuel) associated separately with ThO(2)fuel (blanket) in a heterogeneous approach. The Monte Carlo code MCNPX 2.7.0 has been employed to calculate neutronic parameters such as the effective multiplication coefficient (K-eff), the nuclear fuel evolution during the burnup for every case, and the power fraction from seed and blanket fuels. The results indicate that the utilization of thorium (without any contents of(233)U at the beginning of cycle) with reprocessed fuel allowed more(233)U production than the UN and UO(2)cases but with shorter cycle length. Introducing thorium fuel with the UN into the ADS core presented an efficient method to produce thermal power with the longest cycle length approaching 20 years.
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Kyoto Univ, Inst Res Reactor, Nucl Engn Sci Div, Kumatori, Osaka 5900494, JapanKyoto Univ, Inst Res Reactor, Nucl Engn Sci Div, Kumatori, Osaka 5900494, Japan
Yagi, Takahiro
Sukawa, Kiichi
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Kyoto Univ, Grad Sch Energy Sci, Dept Fundamental Energy Sci, Sakyo Ku, Kyoto 6068501, JapanKyoto Univ, Inst Res Reactor, Nucl Engn Sci Div, Kumatori, Osaka 5900494, Japan
Sukawa, Kiichi
Yamaguchi, Yoshimasa
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Kyoto Univ, Grad Sch Energy Sci, Dept Fundamental Energy Sci, Sakyo Ku, Kyoto 6068501, JapanKyoto Univ, Inst Res Reactor, Nucl Engn Sci Div, Kumatori, Osaka 5900494, Japan
Yamaguchi, Yoshimasa
Misawa, Tsuyoshi
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Kyoto Univ, Inst Res Reactor, Nucl Engn Sci Div, Kumatori, Osaka 5900494, JapanKyoto Univ, Inst Res Reactor, Nucl Engn Sci Div, Kumatori, Osaka 5900494, Japan