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Tytuł artykułu

Pasywne urządzenia do usuwania wodoru z obudowy bezpieczeństwa reaktora jądrowego

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
PL
Abstrakty
Rocznik
Tom
Strony
9--17
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
autor
  • Centrum Badań i Technologii Radiacyjnych, Instytut Chemii i Techniki Jądrowej, Warszawa
Bibliografia
  • [1] Babic M., I. Kljenak, B. Mvko, "Numerical study of interaction between NPP containment atmosphere and passive autocatalytic recombiners"; International Conference Nuclear Energy for New Europe 2006, Portoroz, Slovenia, September 18-21, 2006
  • [2] Babic M., M. Żganec, I. Kljenak, Influence of turbulencje model ling on the simulation of Interaction between NPP containment atmosphere and passive autocatalytic recombiners, International Conference Nuclear Energy for New Europe 2007, Portoroz, Slovenia, September 10-13, 2007
  • [3] Bachellerie E., F. Arnould, M. Auglaire, B. de Boeck, O. Braillard, B. Eckardt, F. Ferroni, R. Moffett, "Generic approach for designing and implementing a passive autocatalytic recombiner PAR-system in nuclear power plant containments Nuclear Engineering and Design", 221 (2003) 151-165
  • [4] Bury T., "Thermodynamic consequences of hydrogen combustion within a containment of a pressurized water reactor by means of lumped parameter code simulations", Archiwum E Energetyki, t. 2011
  • [5] Deng J., X.W. Cao, "A study on evaluating a passive autocatalytic recombiner PAR-system in the PWR large-dry containment", 238 (2008) 2554-2560
  • [6] Granzow Ch., Tobias Nohner, Thomas Zimmermann, "Studies On Heat Pipe Cooled Autocatalytic Hydrogen Recombination" International Conference Nuclear Energy for New Europe 2009, Bled Slovenia, 14-17 September 2009
  • [7] Jimenez M., Juan M. Martin-Valdepenas, Francisco Martin-Fuertes, Jose A. Fernandez, A detailed chemistry model for transient hydrogen and carbon monoxide catalytic recombination on parallel flat Pt surfaces implemented in an integral code, Nucl. Engin. And Design, V 237, issue 5, 460-472, 2007
  • [8] Krause M., "Hydrogen Program at AECL" The 2nd European Review Meeting on Severe Accident Research (ERMSAR-2007) Forschungszentrum Karlsruhe GmbH (FZK), Germany, 12-14 June 2007
  • [9] Laaksonen J.,"Safety Upgrades at NPP's in Finland, Based on Lessons Learned from Foreign Operating Experience", RIC 2009, W12 Regulatory Applications of International Operating Experience, March 11, 2009
  • [10] Mimouni S., N. Mechitoua, M. Ouraou, „CDF recombiner model ling and validation on the H2-PAR and Kali-H2 experiments", Science and Technology of Nuclear Installations, v. 2011, p. 13
  • [11] Park Jae-Won, Byung-Ryung Koh, Kune Y. Sun, "Demonstrative testing of honeycomb passive autocatalytic recombiner for nuclear power plant. Nuclear Engineering and Design, Vol. 241, Iss. 10 (2011), s. 4280-4288
  • [12] Reinecke E.-A., A. Bentaib, S. Kelm, W. Jahn, N. Meynet, C. Caroli, "Review of LP&CFD recombiner modelling and experiments: applicability to reactor simulations and open issues", The 3rd European Review Meeting on Severe Accident Research (ERMSAR-2008) Nesseber, Bulgaria, 23-25 September 2008
  • [13] Reinecke E.-A., S. Kelm, S. Struth, Ch. Granzow, U. Schwarz, „Design of catalytic recombiners for safe removal of hydrogen from flammable gas mixtures", 2nd International Conference on Hydrogen Safety San Sebastian, September 11-13, 2007
  • [14] Reinecke E.-A., I. M. Tragsdorf, K. Gierling, "Studies on innovative hydrogen recombiners as safety devices in the containment of light water reactors", Nuclear Engineering and Design, Vol. 230, Iss. 1-3 (2004), s. 49-59
  • [15] Wilkening H., et al.,"European research on issues concerning hydrogen behavior in containment within the SARNET network of excellence", Proceedings of ICAPP'08, QAnaheim, CA, USA, 8-12 June 2008
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e46b9770-c994-429c-a113-b582e99013a8
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