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Receipt and storage issues at the TM1-2 irradiated fuel storage installation

机译:TM1-2辐照燃料存储安装的收据和存储问题

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In less than a year, up to 12 canisters of TMI-2 reactor fuel debris were loaded into each of 28 Dry Storage Containers (DSCs), and placed into interim storage at an Irradiated Spent Fuel Storage Facility (ISFSI) at the Idaho National Engineering and Environmental Laboratory (INEEL). Draining and drying the canisters, loading and welding the DSCs, shipping the DSCs 25 miles, and storing in the ISFSI initially required up to 3 weeks per DSC. Significant rime efficiencies were achieved during the early stages, reducing the time to less than one week per DSC. These efficiencies were achieved mostly in canister draining and drying and DSC lid welding, and despite several occurrences that had to be resolved before continuing work. The ISFSI has been operated without issue since, with the exception that license basis monitoring has indicated an unusual pattern of season- and position-dependent hydrogen generation. This paper discusses some of the innovations and storage experiences for the first ISFSI designed for the storage of severely defected fuel.
机译:在不到一年的时间内,最多12个TMI-2反应器燃料碎片的罐装成28个干储存容器(DSC)中的每一个,并在Idaho国家工程处的照射的花费燃料储存设施(ISFSI)中的临时储存中和环境实验室(ineel)。排出和干燥罐,装载和焊接DSC,将DSCS运送25英里,并在ISFSI中存储最初每DSC最多需要3周。在早期阶段实现显着的霜效率,将时间减少到每DSC的时间不到一周。这些效率主要是在罐内排水和干燥和DSC盖焊接中实现的,尽管在继续工作之前必须解决几次出现。由于许可基础监测表明了诸如依赖于季节和位置依赖性的氢生成的异常模式,因此,isfsi已经没有问题。本文讨论了专为储存严重缺陷的燃料而设计的第一个ISFSI的一些创新和存储体验。

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