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The performance of closed reactor grade plutonium-thorium fuel cycles in reduced-moderation pressurised water reactors

机译:减缓压水堆中封闭反应堆级p--燃料循环的性能

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摘要

The production of long-lived transuranic (TRU) waste is a major disadvantage of fission-based nuclear power. Previous work has indicated that TRU waste can be virtually eliminated in a pressurised water reactor (PWR) fuelled with a mixture of thorium and TRU waste, when all actinides are returned to the reactor after reprocessing. However, the optimal configuration for a fuel assembly operating this fuel cycle is likely to differ from the current configuration. In this paper, the differences in performance obtained in a reduced-moderation PWR operating this fuel cycle were investigated using WIMS. The chosen configuration allowed an increase of at least 20% in attainable burn-up for a given TRU enrichment. This will be especially important if the practical limit on TRU enrichment is low. The moderator reactivity coefficients limit the enrichment possible in the reactor, and this limit is particularly severe if a negative void coefficient is required for a fully voided core. Several strategies have been identified to mitigate this. Specifically, the control system should be designed to avoid a detrimental effect on moderator reactivity coefficients. The economic viability of this concept is likely to be dependent on the achievable thermal-hydraulic operating conditions.
机译:长寿命超铀(TRU)废物的产生是基于裂变的核电的主要缺点。先前的工作表明,在所有act系元素经过重新处理后返回到反应堆后,可以在装有with和TRU废物混合物的压水反应堆(PWR)中几乎消除TRU废物。然而,用于操作该燃料循环的燃料组件的最佳配置可能与当前配置不同。在本文中,使用WIMS研究了在运行此燃料循环的减速模式PWR中获得的性能差异。对于给定的TRU富集,选择的配置可使可燃耗至少增加20%。如果对TRU富集的实际限制很低,这将尤其重要。慢化剂反应性系数限制了反应器中可能的富集,并且如果完全孔隙的核需要负的孔隙系数,则该限制特别严重。已经确定了几种减轻这种情况的策略。具体而言,控制系统应设计成避免对慢化剂反应性系数产生不利影响。该概念的经济可行性可能取决于可实现的热工操作条件。

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