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Under irradiation issues of the CSZ-based inert matrix fuels from IFA-652 Halden experiment

机译:IFA-652 Halden实验中基于CSZ的惰性基质燃料的辐照问题

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The renewal of interest in Fast Reactors (FR) deployment as possible answer to the future perspective of natural uranium shortage has led to reconsider the plutonium as an energy source with a consequent radical change in its management. The transition to a closed fuel cycle is estimated to occur in a period ranging from 2030 to 2050. In the near term, Inert Matrix Fuels (IMF) are currently viable options, capable to contribute in reducing the proliferation risk associated to nowadays separated plutonium stockpiles in a business-as-usual nuclear energy scenario where a prominent role is still played by Light Water Reactors (LWR) in a once-through fuel cycle strategy. Double-strata strategy with Accelerator Driven Systems (ADS) machines to transmute minor actinides also support the hypothesis of inert matrix heterogeneous fuels. These reasons justify the current interest in IMF. A high burning efficiency achieved by preventing new plutonium build-up under irradiation (U-free fuel), a proved high radiation damage and leaching resistance are fundamental requirements when a once-through fuel cycle strategy is planned. Amongst other options, Calcia-Stabilised Zirconia (CSZ) and Yttria-Stabilised Zirconia (YSZ) fulfil these criteria standing as the most promising matrices to host plutonium. ENEA has conceived an in-pile testing (IFA-652 experiment) of viable inert matrices concepts: CSZ and thoria. This experiment was performed in the Halden Heavy Boiling Water Reactor (HBWR), a joint project of the OECD Nuclear Energy Agency.rnThe test-rig is a six-rod bundle loaded with IM, IMT and T innovative fuels. IM and T fuels have, respectively, CSZ and thoria matrix, the fissile phase is High Enriched Uranium (HEU) oxide (UO_2 93% ~(235)U enriched). IMT is a ternary fuel composed of CSZ + thoria matrix and HEU oxide as fissile phase. Thoria is added in IMT fuel mainly to improve the low IM reactivity feedback coefficients. The discharge burnup, under typical LWR conditions, was, for all pins, 90-95% of the planned 45 MWd/kgU. Pins are instrumented providing fuel centreline temperature, pin inner pressure and fuel stack elongation measurements. On the basis of the experimental dataset under power ramping, a possible correlation of the FGR onset of CSZ-based fuels with the Halden Vitanza curve apparently exists. The TRANSURANUS (TU) fuel performance code predictions proved to be in nice agreement with the experimental findings concerning the thermal performance of IMF whilst, regarding FGR and densification, a satisfactory modelling is still needed.
机译:对快速反应堆(FR)部署的兴趣的更新可能是对未来自然铀短缺前景的回答,这导致人们重新考虑了as作为一种能源,其管理也随之发生了根本变化。估计向封闭燃料循环的过渡将发生在2030年至2050年之间。在短期内,惰性基质燃料(IMF)目前是可行的选择,能够有助于降低与如今分离的separated库存相关的扩散风险。在照常运行的核能方案中,轻水反应堆(LWR)在一次性燃料循环策略中仍扮演着重要角色。利用加速器驱动系统(ADS)机器转换次act系元素的双重策略也支持惰性基质非均质燃料的假设。这些原因证明了当前对IMF的兴趣。当计划一次通过燃料循环策略时,通过防止新的(在无辐射的情况下堆积新的((不含U的燃料),高的燃烧效率,已证明的高辐射损伤和耐浸出性是基本要求。除其他选择外,氧化钙稳定的氧化锆(CSZ)和氧化钇稳定的氧化锆(YSZ)满足这些标准,是承载promising的最有前途的基质。 ENEA已设想对可行的惰性矩阵概念:CSZ和thoria进行堆内测试(IFA-652实验)。该实验是在经合组织核能机构的一个联合项目-哈尔登重沸水反应堆(HBWR)中进行的。试验台是装有IM,IMT和T创新燃料的六棒束。 IM和T燃料分别具有CSZ和thoria基质,易裂变相是高浓铀(HEU)氧化物(UO_2 93%〜(235)U富集)。 IMT是由CSZ +氧化ria基质和HEU氧化物作为易裂变相组成的三元燃料。在IMT燃料中添加了Thoria,主要是为了改善低IM反应性反馈系数。在典型的LWR条件下,所有引脚的放电燃耗均为计划的45 MWd / kgU的90%至95%。装有销钉的仪表可提供燃料中心线温度,销钉内部压力和燃料堆伸长率的测量值。根据功率提升下的实验数据集,显然存在基于CSZ的燃料的FGR发生与Halden Vitanza曲线的可能相关性。事实证明,TRANSURANUS(TU)燃料性能代码预测与有关IMF热性能的实验结果非常吻合,而在FGR和致密化方面,仍需要令人满意的模型。

著录项

  • 来源
    《Progress in nuclear engergy》 |2010年第4期|352-358|共7页
  • 作者单位

    ENEA, Innovative Nuclear Reactors and Fuel Cycle Closure Division, via Martin di Monte Sole 4, 40129 Bologna, Italy;

    ENEA, Innovative Nuclear Reactors and Fuel Cycle Closure Division, via Martin di Monte Sole 4, 40129 Bologna, Italy;

    OECD Halden Reactor Project, PB. 173, N-1751 Halden, Norway;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    inert matrix fuel; fission gas release; fuel rod performance code;

    机译:惰性基质燃料裂变气体释放;燃油杆性能规范;
  • 入库时间 2022-08-18 00:43:42

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