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Technical Paper

Modeling Condensation Steam Quenching Effects in an MSIV Closure Transient Using RETRAN-02-MOD002 With and Without Nonequilibrium Pressurizer Model Option and TRAC-BF1

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Pages 206-219 | Published online: 12 May 2017

References

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  • A. J. ROSCIOLI et al., Pennsylvania Power and Light Company, Private Correspondence (1982).
  • R. J. KANICK, “A Study of the Effects of Variations in the SSES RETRAN Model on a Loss of All Feedwater Transient Using the RETRAN-02 Computer Code,” BS Honors Thesis, The Pennsylvania State University (1984).
  • J. R. MAHAFFY and D. R. LILES, “Numerically Induced Pressure Excursions in Two-Phase-Flow Calculations,” LA-UR-82-1664, Los Alamos National Laboratory (Jan. 1983).
  • J. A. NASER, “Peach Bottom Analysis Using Various RETRAN-02 Options,” NP-2494-SR, Electric Power Research Institute (July 1982).
  • “TRAC-BDl/MODl: An Advanced Best Estimate Computer Program for Boiling Water Transient Analysis,” Vols. 1-4, NUREG/CR-3633, U.S. Nuclear Regulatory Commission (Apr. 1984).
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  • S. A. SOMMA, “RETRAN Simulation of Susquehanna Unit 1 MSIV Closure Startup Test,” Technical Report NPE-84-007, Pennsylvania Power and Light Company (1984).
  • B. D. BOYER, “An Evaluation of the RETRAN-02 Nonequilibrium Model for Use in a MSIV Closure Transient,” MS Thesis, The Pennsylvania State University (Dec. 1985).
  • J. HARTZELL, “An Investigation of BWR Stability Following a MSIV Closure Initiated ATWS Using TRACBFl,” MS Thesis, The Pennsylvania State University (May 1992).
  • S. LIDER, “An Investigation of BWR Stability Under Natural Circulation Conditions Using TRAC-BFl,” MS Thesis, The Pennsylvania State University (Aug. 1993).

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