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首页> 外文期刊>Annals of nuclear energy >Optimization of light water reactor High Level Waste disposal scenario in the situation of delayed reprocessing with existing and demonstrated technology
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Optimization of light water reactor High Level Waste disposal scenario in the situation of delayed reprocessing with existing and demonstrated technology

机译:现有及展示技术延迟再处理情况下的轻水反应器高水平废物处理方案的优化

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Disposal scenario of High Level Waste (HLW) of Light Water Reactor (LWR) have been optimized to reduce waste volume and repository footprint in geological disposal. The optimization was performed with existing and demonstrated technology in the situation where the reprocessing will be delayed. In general, the scenario with Partitioning and Transmutation (P&T) is optimized to minimize waste package number generated in the situation where the spent fuel will be reprocessed immediately with the minimum cooling time. With considering the delay of reprocessing, it is found that the more simplified and effective optimization with the high-waste-loading glass and cold crucible induction melter technologies and without partitioning. The optimized case can achieve significant reduction of number of waste package generation and the repository footprint to half of those of non-P&T case with 100 years cooling. (C) 2020 Elsevier Ltd. All rights reserved.
机译:优化光水反应器(LWR)的高水平废物(HLW)的处理场景,以减少地质处置中的废物和储存库足迹。在再处理将延迟的情况下,在现有和证明技术中进行了优化。通常,具有分配和嬗变(P&T)的场景经过优化,以最小化在所产生的燃料将立即再处理的情况下产生的废物包装数。考虑到重新处理的延误,发现与高垃圾装载玻璃和冷坩埚感应熔化技术更简单有效的优化和不分区。优化的案例可以实现大量减少废物包装数量和储存库足迹,以100年冷却的非P&T案例的一半。 (c)2020 elestvier有限公司保留所有权利。

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