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OPTIMUM DISCHARGE BURNUP AND CYCLE LENGTH FOR PWRs

机译:压水堆的最佳放电燃耗和循环长度

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This paper discusses the results of a pressurized water reactor fuel management study determining the optimum discharge burnup and cycle length. A comprehensive study was performed considering 12-, 18-, and 24-month fuel cycles over a wide range of discharge burnups. A neu-tronic study was performed followed by an economic evaluation. The first phase of the study limited the fuel enrichments used in the study to < 5 wt% ~(235)U consistent with constraints today. The second phase extended the range of discharge burnups for 18-month cycles by using fuel enriched in excess of 5 wt%. The neutronic study used state-of-the-art reactor physics methods to accurately determine enrichment requirements. Energy re- quirements were consistent with today's high capacity factors ( > 98%) and short (15-day) refueling outages. The economic evaluation method considers various component costs including uranium, conversion, enrichment, fabrication and spent-fuel storage costs as well as the effect of discounting of the revenue stream. The resulting fuel cycle costs as a function of cycle length and discharge burnup are presented and discussed. Fuel costs decline with increasing discharge burnup for all cycle lengths up to the maximum discharge burnup considered. The choice of optimum cycle length depends on assumptions for outage costs.
机译:本文讨论了压水堆燃料管理研究的结果,该研究确定了最佳排放燃耗和循环长度。进行了一项综合研究,考虑了在各种放电燃耗情况下的12、18和24个月的燃料循环。进行了中子学研究,然后进行了经济评估。研究的第一阶段将研究中使用的燃料浓缩度限制在<5 wt%〜(235)U,与当今的限制相一致。第二阶段通过使用浓度超过5 wt%的燃料,将燃尽的范围扩大了18个月。中子学研究使用了最先进的反应堆物理方法来准确确定富集要求。能源需求与当今的高容量因子(> 98%)和短期(15天)加油中断相一致。经济评估方法考虑了各种组成成本,包括铀,转化,浓缩,制造和乏燃料存储成本,以及收入流折现的影响。介绍并讨论了由此产生的燃料循环成本,该成本是循环长度和排放燃耗的函数。在所有周期长度内,燃料成本随着排放燃耗的增加而下降,直至考虑的最大排放燃耗。最佳周期长度的选择取决于中断成本的假设。

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