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Technical Paper

Evaluation of Weak Heat Conduction Mechanism Model for Long-Term LOCAs in RBMK-1500

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Pages 18-25 | Published online: 10 Apr 2017

References

  • K. ALMENAS, A. KALIATKA, and E. USPURAS, Ignalina RBMK-1500. A Source Book. Extended and Updated Version, Lithuanian Energy Institute, Kaunas, Lithuania (1998).
  • A. Y. KRAMEROV and D. A. MIHAILOV, “An Approach for Research of Severe Accidents in the Channel Type Boiling Water Reactors,” Proc. 5t Int. Information Exchange Forum Safety Analysis for Nuclear Power Plants of VVER and RBMK Types Reactors, Obninsk, Russia, October, 16–20, 2000, p. 8 (2000) (in Russian).
  • “RELAP5-3D Code Manual, Appendix A, RELAP5-3D Input Data Requirements,” INEEL-EXT-98-00834-V2, Idaho National Engineering and Environmental Laboratory (1998).
  • S. PAIK, “RELAP5-3D Multidimensional Heat Conduction Enclosure Model for RBMK Reactor Application,” Nucl. Technol., 128, 87 (1999).
  • A. V. KRAJUSHKIN, “Expertise of the Regular Algorithm for the Calculation of the Graphite Temperature and the Analysis of the Possibility for Its Modification,” Report No. 33-08/29, Russian Research Center “Kurchatov Institute” (1998).
  • “Ignalina NPP ICS Database (Ignalina NPP Second Reactor Unit Condition on 16.04.1998),” No. PTOap-1245-10, Ignalina Nuclear Power Plant (1998).
  • A. KALIATKA and E. USPURAS, “Thermal-Hydraulic Analysis of Accidents Leading to Local Coolant Flow Decrease in the Main Circulation Circuit of RBMK-1500,” Nucl. Eng. Des.,217, 1-2, 91 (2002).
  • A. KALIATKA, E. USPURAS, and V. VILEINISKIS, “Analysis of RBMK-1500 Fuel Channels Cooling During Long-Term LOCA Using RELAP5-3D Code,” Proc. 10th Int. Topl. Mtg. Nuclear Reactor Thermal-Hydraulics (NURETH-10), Seoul, Korea, October, 5–9, 2003, p. 12 (2003).

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