DEVELOPMENT OF A TWO-DIMENSIONAL THERMOHYDRAULIC HOT POOL MODEL AND ITS EFFECTS ON REACTIVITY FEEDBACK DURING A UTOP IN LIQUID METAL REACTORS
The existence of a large sodium pool in the KALIMER, a pool-type LMR developed by the Korea Atomic Energy Research Institute, plays an important role in reactor safety and operability because it determines the grace time for operators to cope with an abnormal event and to terminate a transient befor...
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Veröffentlicht in: | Nuclear engineering and technology 2009, 41(8), , pp.1053-1064 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The existence of a large sodium pool in the KALIMER, a pool-type LMR developed by the Korea Atomic Energy
Research Institute, plays an important role in reactor safety and operability because it determines the grace time for operators
to cope with an abnormal event and to terminate a transient before reactor enters into an accident condition. A two-dimensional
hot pool model has been developed and implemented in the SSC-K code, and has been successfully applied for the assessment
of safety issues in the conceptual design of KALIMER and for the analysis of anticipated system transients. The other
important models of the SSC-K code include a three-dimensional core thermal-hydraulic model, a reactivity model, a passive
decay heat removal system model, and an intermediate heat transport system and steam generation system model. The
capability of the developed two-dimensional hot pool model was evaluated with a comparison of the temperature distribution
calculated with the CFX code. The predicted hot pool coolant temperature distributions obtained with the two-dimensional
hot pool model agreed well with those predicted with the CFX code. Variations in the temperature distribution of the hot
pool affect the reactivity feedback due to an expansion of the control rod drive line (CRDL) immersed in the pool. The
existing CRDL reactivity model of the SSC-K code has been modified based on the detailed hot pool temperature distribution
obtained with the two-dimensional pool model. An analysis of an unprotected transient over power with the modified
reactivity model showed an improved negative reactivity feedback effect. KCI Citation Count: 0 |
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ISSN: | 1738-5733 2234-358X |
DOI: | 10.5516/NET.2009.41.8.1053 |