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Reactivity control with metallic hydride burnable poison for plutonium-burner accelerator-driven system

Abe, Takumi*; Aizawa, Naoto*; Sugawara, Takanori  ; Iwasaki, Tomohiko*

The accelerator-driven system for plutonium burning was designed by applying the reactivity control method for long-term operation. As a result, it was shown that the burnup reactivity loss could be reduced from 5%dk/k to 1.4%dk/k and the maximum cladding surface temperature could be reduced to 533$$^{circ}$$C for a 200-day operation period by optimizing the burnable poison assembly loaded in the core.

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