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Stabilizing Hierarchical Heterostructures Enables Impact‐Resistant High‐Entropy Alloys
Rare Metals, Volume 45, Issue 9, September 2026.
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Characteristics of reactivity change as fuel debris falls in water
Progress in Nuclear Energy, 2021We investigated the characteristics of reactivity change due to fuel debris falling into water. The impact of each parameter on criticality was evaluated using a basic parametric survey. The results clearly indicated that when a large number of fuel debris pieces suddenly sediment in water, the reactivity increases rapidly.
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The motion of tethered tug–debris system with fuel residuals
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Numerical analysis of criticality of fuel debris falling in water
Annals of Nuclear Energy, 2019Abstract The dynamic behavior of fuel debris in water raises the possibility of criticality accidents during debris removal. Hence, accurate evaluations of criticality that consider the dynamic behavior of fuel debris are an essential part of the decommissioning process. In this study, we develop a calculation system that combines the moving particle
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Extraction of Alternative Fuels from Fire Debris Samples*
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