2018
DOI: 10.1016/j.ijpvp.2018.10.007
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Development and application of safety assessment system in PFM analysis for RPV to study the influence of the neutron fluence estimate

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Cited by 1 publication
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“…When the RPV cannot function to maintain the helium gas that occupies the gap between the core barrel and the inner shell wall, this phenomenon does not cause fuel heat to rise inside the core and this cannot ultimately meltdown the reactor core, unlike in the case study of nuclear accident in Japan when the pressure vessel is malfunction, heat continues to accumulate in the reactor and then the core meltdown and damaged [6][7][8]. Other than that, neutron irradiation embrittlement reduces the fracture toughness of RPV materials during plant operation [9][10][11]. Considering such situations above, a potential for accident can be avoided by developing a safety consideration of the RPV wall design.…”
Section: Introductionmentioning
confidence: 99%
“…When the RPV cannot function to maintain the helium gas that occupies the gap between the core barrel and the inner shell wall, this phenomenon does not cause fuel heat to rise inside the core and this cannot ultimately meltdown the reactor core, unlike in the case study of nuclear accident in Japan when the pressure vessel is malfunction, heat continues to accumulate in the reactor and then the core meltdown and damaged [6][7][8]. Other than that, neutron irradiation embrittlement reduces the fracture toughness of RPV materials during plant operation [9][10][11]. Considering such situations above, a potential for accident can be avoided by developing a safety consideration of the RPV wall design.…”
Section: Introductionmentioning
confidence: 99%