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Japan Atomic Power Company | 論文
- Critical Heat Flux in a Vertical Annulus under Low Upward Flow and near Atmospheric Pressure
- MOX Co-deposition Tests at RIAR for SF Reprocessing Optimization
- Plutonium Precipitation in the MOX Co-deposition Tests for the Oxide Electrowinning Process
- Low Current Efficiency in MOX Deposition Tests
- Progress on the Plant Design Concept of Sodium-Cooled Fast Reactor
- Safety Strategy of JSFR Eliminating Severe Recriticality Events and Establishing In-Vessel Retention in the Core Disruptive Accident
- In-Core SCC Growth Behavior of Type 304 Stainless Steel in BWR Simulated High-Temperature Water at JMTR
- ICONE11-36136 Program of in-pile IASCC testing under the simulated actual plant condition : Development of Technique for In-pile IASCC Initiation Test in JMTR
- ICONE11-36119 PROGRAM OF IN-PILE IASCC TESTING UNDER THE SIMULATED ACTUAL PLANT CONDITION : Development of technique for in-pile IASCC growth test in JMTR
- ICONE11-36106 Program of in-pile IASCC testing under the simulated actual plant condition : Thermohydraulic design study of saturated temperature capsule for IASCC irradiation test
- Demonstration of Control Rod Holding Stability of the Self Actuated Shutdown System in Joyo for Enhancement of Fast Reactor Inherent Safety
- ICONE11-36172 EVALUATION OF CRITICAL HEAT FLUX OF TIGHT LATTICE CORE WITH SUBCHANNEL ANALYSIS CODE NASCA
- ICONE11-36097 DEVELOPMENT OF MECHANISTIC BOILING TRANSITION MODEL IN ROD BUNDLES
- ICONE11-36324 Program of in-pile IASCC testing under the simulated actual plant condition : Overview
- Safety Strategy of JSFR Eliminating Severe Recriticality Events and Establishing In-Vessel Retention in the Core Disruptive Accident
- ICONE11-36181 CURRENT STATUS OF TOKAI-1 DECOMMISIONING PROJECT
- SB-03-2(100) Benchmark Study of Creep-Fatigue life Predicted by Elevated Temperature Design Standards of Every Country(Materials Performance in Nuclear Application 3)
- Numerical Investigation of Cross Flow Phenomena in a Tight-Lattice Rod Bundle Using Advanced Interface Tracking Method