Feasibility of Lead-Bismuth-Cooled Accelerator-Driven System for Minor-Actinide Transmutation

Оценка реализуемости ускорительно-управляемой системы с охлаждением свинцово-висмутовым теплоносителем для трансмутации минорных актинидов
K. Tsujimoto, Hiroyuki Oigawa, Kenji Kikuchi, Y. Kurata, M. Mizumoto, Toshinobu Sasa, Shigeru Saito, Kenji Nishihara, Makoto Umeno, H. Takei
2008-03-01

beam windowhigh-power spallation targetlead-bismuth-cooled accelerator-driven systemminor-actinide transmutationunprotected loss of flow
The feasibility for the lead-bismuth-cooled accelerator-driven system (ADS) to transmute minor actinides partitioned from high-level radioactive waste is discussed. Since lead-bismuth will cause considerable corrosion and erosion effects at high temperature, the fuel-clad temperature must be kept as low as possible. Moreover, the most critical issue of the ADS design is the engineering viability of the high-power spallation target and the beam window. The thermal-hydraulic and structural analysis was carried out for both the fuel assembly and the beam window. In addition to the analysis in steady state, the transient behaviors were also studied during typical transient and unprotected accidents. The results showed that engineering viability is reasonably achievable in the nominal operation. For the beam trip, which will be the most frequent transient, the number of events to cause the failure of the beam window is estimated as more than 105. For safety aspects of the ADS during unprotected accidents, the estimated results showed that unprotected loss of flow would cause the most significant problem, if the beam operation was kept. Therefore, high reliability of the beam shutdown is required for the ADS safety.
1
Frequent beam-trip transients are unlikely to fail the beam window until more than 10^5 events, according to estimates.
2
High reliability of accelerator-beam shutdown is required to ensure ADS safety.
3
Lead-bismuth-cooled accelerator-driven systems appear engineering-feasible for minor-actinide transmutation under nominal operating conditions.
4
Thermal-hydraulic and structural analyses addressed fuel assemblies and beam windows in steady-state, transient, and unprotected-accident scenarios.
5
Unprotected loss of flow is the most significant safety concern when beam operation continues during an accident.

lead-bismuth-cooled accelerator-driven system (ADS) for transmuting minor actinides partitioned from high-level radioactive waste

engineering feasibility, thermal-hydraulic and structural performance, transient behavior, and safety of the fuel assembly, high-power spallation target, and beam window under nominal operation and unprotected accidents

Publication Details
Publication Date
2008-03-01
Journal
Publisher
ISSN
Access Type
Author Information
Authors
K. Tsujimoto
Hiroyuki Oigawa
Kenji Kikuchi
Y. Kurata
M. Mizumoto
Toshinobu Sasa
Shigeru Saito
Kenji Nishihara
Makoto Umeno
H. Takei
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%