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Multiple recycling of fuel in prototype fast breeder reactor in a closed fuel cycle with pressurized heavy-water reactor external feed

机译:在加压重水反应堆外部进料的封闭燃料循环中,快速原型增殖堆中的燃料进行多次回收

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A fast breeder reactor (FBR) closed fuel cycle involves recycling of the discharged fuel, after reprocessing and refabrication, in order to utilize the unburnt fuel and the bred fissile material. Our previous study in this regard for the prototype fast breeder reactor (PFBR) indicated the possibility of multiple recycling with self-sufficiency. It was found that the change in Pu composition becomes negligible (less than 1%) after a few cycles. The core-1 Pu increases by 3% from the beginning of cycle-0 to that of recycle-1, the Pu increase from the beginning of the 9th cycle to that of the 10th by only 0.3%. In this work, the possibility of multiple recycling of PFBR fuel with external plutonium feed from pressurized heavy-water reactor (PHWR) is examined. Modified in-core cooling and reprocessing periods are considered. The impact of multiple recycling on PFBR core physics parameters due to the changes in the fuel composition has been brought out. Instead of separate recovery considered for the core and axial blankets in the earlier studies, combined fuel recovery is considered in this study. With these modifications and also with PHWR Pu as external feed, the study on PFBR fuel recycling is repeated. It is observed that the core-1 initial Pu inventory increases by 3.5% from cycle-0 to that of recycle-1, the Pu increase from the beginning of the 9th cycle to that of the 10th is only 0.35%. A comparison of the studies done with different external plutonium options viz., PHWR and PFBR radial blanket has also been made.
机译:快速增殖反应堆(FBR)的封闭燃料循环包括在重新加工和再制造后对排出的燃料进行再循环,以便利用未燃烧的燃料和繁殖的易裂变材料。我们先前在这方面对原型快速增殖反应堆(PFBR)的研究表明,自给自足的多次循环利用的可能性。发现在几个循环后,Pu组成的变化可忽略不计(小于1%)。从循环0的开始到循环1的核心1 Pu增加了3%,​​从第9个循环的开始到第10个循环的Pu增加了0.3%。在这项工作中,研究了使用加压重水反应堆(PHWR)的外部p进料对PFBR燃料进行多次回收的可能性。考虑了修改后的堆芯冷却和后处理时间。由于燃料成分的变化,多次回收对PFBR核心物理参数的影响已经显现出来。代替早期研究中考虑的岩心和轴向覆盖层的单独回收,本研究考虑了联合燃料回收。通过这些修改以及PHWR Pu作为外部进料,重复进行了PFBR燃料回收的研究。可以看出,核心1的初始Pu库存量从周期0到循环1的库存量增加了3.5%,从第9个周期开始到第10个周期的Pu的增加量仅为0.35%。还对使用不同外部external选项(PHWR和PFBR径向覆盖层)进行的研究进行了比较。

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