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Characteristics of a Geological Disposal System for the Increasing Burn-up of Spent Nuclear Fuel in Korea

机译:韩国增加废核燃料燃尽的地质处置系统的特征

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The characteristics of a geological disposal system that can accommodate increasingly higher burn-up levels of spent fuel were assessed based on the Korea reference disposal system concept. First, a status investigation that included a projection of spent fuel quantity versus burn-up was carried out to demonstrate the trend toward higher burn-up levels. Next, the main features of the Korea reference disposal system were introduced. Finally, the disposal tunnel length, excavation volume, and raw materials (e.g., a cast insert, copper, bentonite and backfill) necessary for a disposal system were comprehensively analyzed to define the characteristics and overall effects on geological disposal at increasingly higher burn-up levels. Our study determined that it is reasonable to use a canister containing 4 spent fuel assemblies with burn-up levels up to 50GWD/MTU, while a canister containing 3 spent fuel assemblies can accommodate burn-up levels beyond 50GWD/MTU. A remarkable increase of 33% in disposal tunnel length and that of 30% in excavation volume were observed as the burn-up increased from 50 to 60 GWD/MTU. However, this was offset by a reduction of 17% in raw materials used in canister fabrication. Therefore, it seems that spent fuel at increasingly higher burn-up levels is not a serious concern for deep geological disposal in Korea.
机译:根据韩国参考处置系统的概念,评估了可容纳越来越高的乏燃料燃耗水平的地质处置系统的特征。首先,进行了一项状态调查,其中包括乏燃料量与燃尽量的预测,以证明燃尽量较高的趋势。接下来,介绍了韩国参考处置系统的主要功能。最后,对处置系统所需的处置隧道长度,开挖量和原材料(例如铸件,铜,膨润土和回填物)进行了综合分析,以确定了燃耗越来越高时地质处置的特征和总体影响。水平。我们的研究确定,使用包含4个燃耗水平高达50GWD / MTU的乏燃料组件的滤罐是合理的,而包含3个燃耗燃料组件的滤罐可以容纳超过50GWD / MTU的燃耗级别。随着燃耗从50 GWD / MTU增加到60,处置隧道长度显着增加,挖掘量显着增加30%。但是,这被罐制造中使用的原材料减少了17%所抵消。因此,燃尽程度越来越高的乏燃料似乎并不是韩国深层地质处置的严重问题。

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