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Citation(s) in
RCA
5
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PROGRESS IN NUCLEAR ENERGY (3)
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Nuclear Science & Technology (5)
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For:
Sawada T
, Ninokata H, Tomozoe H, Endo H.
A Recriticality-Free Fast Reactor Core Concept.
NUCL TECHNOL
2017. [DOI:
10.13182/nt130-242
]
[
Citation(s) in
RCA
: 5
]
[
Impact Index Per Article: 0.7
]
[
Reference Citation Analysis
]
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[Indexed: 11/12/2022]
Number
Cited by Other Article(s)
1
The path for innovative severe accident neutronics studies in ZPRs. Part I.1 - Analysis of SNEAK-12A experiments for core disruption in LMFBRs.
PROGRESS IN NUCLEAR ENERGY
2017. [DOI:
10.1016/j.pnucene.2016.11.001
]
[
Citation(s) in
RCA
: 7
]
[
Impact Index Per Article: 1.0
]
[
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]
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[Indexed: 11/20/2022]
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2
FAUSKE HK
, KOYAMA K, KUBO S. Assessment of the FBR Core Disruptive Accident (CDA): The Role and Application of General Behavior Principles (GBPs).
J NUCL SCI TECHNOL
2002. [DOI:
10.1080/18811248.2002.9715242
]
[
Citation(s) in
RCA
: 5
]
[
Impact Index Per Article: 0.2
]
[
Reference Citation Analysis
]
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[Indexed: 10/28/2022]
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3
Elimination of recriticality potential for the Self-Consistent Nuclear Energy System.
PROGRESS IN NUCLEAR ENERGY
2002. [DOI:
10.1016/s0149-1970(02)00053-7
]
[
Citation(s) in
RCA
: 16
]
[
Impact Index Per Article: 0.7
]
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[Indexed: 11/21/2022]
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4
Sawada T
. Computational modeling and verification for hexcan wall failure under simulated core disruptive accident condition.
ANN NUCL ENERGY
2001. [DOI:
10.1016/s0306-4549(00)00136-5
]
[
Citation(s) in
RCA
: 1
]
[
Impact Index Per Article: 0.0
]
[
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[Indexed: 11/16/2022]
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5
Characteristics of fuel melting and relocation in metallic-fueled fast reactor core and its feasibility for eliminating recriticality.
PROGRESS IN NUCLEAR ENERGY
2000. [DOI:
10.1016/s0149-1970(00)00041-x
]
[
Citation(s) in
RCA
: 1
]
[
Impact Index Per Article: 0.0
]
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[Indexed: 11/16/2022]
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