Published June 2018 | Version v1
Journal article

Analysis of PWR SBO sequences with RCP passive thermal shutdown seals

  • 1. Department of Energy and Fuels, Universidad Politecnica de Madrid, Madrid (Spain)
  • 2. Consejo De Seguridad Nuclear, Modeling and Simulation Area, Justo Dorado (Spain)
  • 3. NFQ Solutions, Claudio Coello, Madrid (Spain)
  • 4. Institute for Neutron Physics and Reactor Technology (INR), Karlsruhe Institute of Technology, Eggenstein-Leopoldshafen (Germany)

Description

The operation of recently implanted low-leakage seals after Fukushima has altered the analysis of classical PWR Station Blackout (SBO) sequences, as Seal Loss of Coolant Accident (SLOCA) is no longer one of the dominant factors in the accident progression. An analysis of different management strategies in non-SLOCA sequences has been performed by means of the Integrated Safety Assessment (ISA) methodology using the SCAIS-MAAP model of a 3-Loop PWR Westinghouse design. Through the use of the Damage Domain concept(i.e. the region of the uncertain crew actuation times or physical parameters space where each damage limit is exceeded for each sequence), the times for reaching different damage limits are obtained. Results evidence the positive impact of low-leakage seals, which greatly increase the margin to core uncovery and reduce core damage frequency. Results also allow concluding that an SBO is dominated, namely by the Auxiliary Feed-Water (AFW) mass flow(turning blind AFW management into an essential procedure), SLOCA (in case the new low-leakage seals fail or they are not present), an excessive AFW mass flow (leading to Turbine-Driven Pump failure) and the DC failure time (losing control valves and the instrumentation). (author)

Availability note (English)

Available from http://dx.doi.org/10.1080/00223131.2018.1428125

Additional details

Publishing Information

Journal Title
Journal of Nuclear Science and Technology (Tokyo) (Online)
Journal Volume
55
Journal Issue
6
Journal Page Range
p. 649-662
ISSN
1881-1248

Optional Information

Notes
34 refs., 22 figs., 3 tabs.