Design optimization of cylindrical burnable absorber inserted into annular fuel pellets for soluble-boron-free SMR
被引:5
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作者:
Jo, YuGwon
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Korea Hydro & Nucl Power Co Ltd, Core & Fuel Anal Grp, Cent Res Inst KHNP CRI, 70,Yuseong Daero 1312beon Gil, Daejeon 34101, South KoreaKorea Hydro & Nucl Power Co Ltd, Core & Fuel Anal Grp, Cent Res Inst KHNP CRI, 70,Yuseong Daero 1312beon Gil, Daejeon 34101, South Korea
Jo, YuGwon
[1
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Shin, Ho Cheol
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Korea Hydro & Nucl Power Co Ltd, Core & Fuel Anal Grp, Cent Res Inst KHNP CRI, 70,Yuseong Daero 1312beon Gil, Daejeon 34101, South KoreaKorea Hydro & Nucl Power Co Ltd, Core & Fuel Anal Grp, Cent Res Inst KHNP CRI, 70,Yuseong Daero 1312beon Gil, Daejeon 34101, South Korea
Shin, Ho Cheol
[1
]
机构:
[1] Korea Hydro & Nucl Power Co Ltd, Core & Fuel Anal Grp, Cent Res Inst KHNP CRI, 70,Yuseong Daero 1312beon Gil, Daejeon 34101, South Korea
This paper presents a high performance burnable absorber named as CIMBA (Cylindrically Inserted and Mechanically Separated Burnable Absorber) for the soluble-boron-free SMR. The CIMBA is the cylindrical gadolinia inserted into the annular fuel pellets. Although the CIMBA utilizes the spatial self-shielding effect of the fuel material, a large reactivity upswing occurs when the gadolinia is depleted. To minimize the reactivity swing of the CIMBA-loaded FA, two approaches were investigated. One is controlling the spatial self-shielding effect of the CIMBA as burnup proceeds by a multi-layered structure of the CIMBA (ML-CIMBA) and the other is the mixed-loading of two different types of CIMBA (MIX-CIMBA). Both approaches show promising performances to minimize the reactivity swing, where the MIX-CIMBA is more preferable due to its simpler fabrication process. In conclusion, the MIX-CIMBA is expected to accelerate the commercialization of the CIMBA and can be used to achieve an optimal soluble-boron-free SMR core design. (c) 2021 Korean Nuclear Society, Published by Elsevier Korea LLC. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
机构:
KEPCO Nucl Fuel Co Ltd, 242 Daedoek Daero 989beon Gil, Daejeon 34057, South KoreaKEPCO Nucl Fuel Co Ltd, 242 Daedoek Daero 989beon Gil, Daejeon 34057, South Korea
Kim, Jin Sun
Jung, Tae Sik
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KEPCO Nucl Fuel Co Ltd, 242 Daedoek Daero 989beon Gil, Daejeon 34057, South KoreaKEPCO Nucl Fuel Co Ltd, 242 Daedoek Daero 989beon Gil, Daejeon 34057, South Korea
Jung, Tae Sik
Yoon, Jooil
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KEPCO Int Nucl Grad Sch, 658-91 Haemaji Ro, Ulsan 45014, South KoreaKEPCO Nucl Fuel Co Ltd, 242 Daedoek Daero 989beon Gil, Daejeon 34057, South Korea
机构:
KEPCO Nucl Fuel Co Ltd, 242,Daedoek Daero 989beon Gil, Daejeon 34057, South Korea
KEPCO Int Nucl Grad Sch, 658-91 Haemaji Ro, Ulju Gun 45014, Ulsan, South KoreaKEPCO Nucl Fuel Co Ltd, 242,Daedoek Daero 989beon Gil, Daejeon 34057, South Korea
Kim, Jin Sun
Bae, Gonghoon
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机构:
KEPCO Nucl Fuel Co Ltd, 242,Daedoek Daero 989beon Gil, Daejeon 34057, South KoreaKEPCO Nucl Fuel Co Ltd, 242,Daedoek Daero 989beon Gil, Daejeon 34057, South Korea
Bae, Gonghoon
Yoon, Jooil
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KEPCO Int Nucl Grad Sch, 658-91 Haemaji Ro, Ulju Gun 45014, Ulsan, South KoreaKEPCO Nucl Fuel Co Ltd, 242,Daedoek Daero 989beon Gil, Daejeon 34057, South Korea
机构:
Univ Cambridge, Dept Engn, Cambridge CB2 1PZ, England
French Alternat Energies & Atom Energy Commiss, F-13115 St Paul Les Durance, FranceUniv Cambridge, Dept Engn, Cambridge CB2 1PZ, England
Alam, Syed Bahauddin
Goodwin, Cameron S.
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Rhode Isl Atom Energy Commiss, 16 Reactor Rd, Narragansett, RI 02882 USAUniv Cambridge, Dept Engn, Cambridge CB2 1PZ, England