首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.1 >LOW BURNUP INERT MATRIX FUELS PERFORMANCE: TRANSURANUS ANALYSIS OF THE HALDEN IFA-652 FIRST IRRADIATION CYCLE
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LOW BURNUP INERT MATRIX FUELS PERFORMANCE: TRANSURANUS ANALYSIS OF THE HALDEN IFA-652 FIRST IRRADIATION CYCLE

机译:低燃耗惰性矩阵燃料性能:HALDEN IFA-652首次辐照周期的对子分析

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摘要

The inert matrix fuels are a promising option to reduce-eliminate worldwide plutonium stockpiles by burning it in LWRs. These fuels, where plutonium is hosted in a U-free inert matrix phase, may reach high burning efficiency while preventing new plutonium build-up under irradiation. A specific investigation on CSZ and thoria inert matrices has been developed by ENEA since several years. In-pile testing on the ENEA-conceived innovative fuels is ongoing in the OECD Halden HBWR since June 2000 (IFA-652 experiment). The registered burnup at the end of 2005 is about 38 MWd·kgU_(eq)~(-1) vs. 45 MWd·kgU_(eq)~(-1) (40 MWd·kgUOX_(eq)~(-1)) target. Fuel pins are equipped with fuel temperature thermocouples, internal pressure transducers and fuel stack elongation sensors, with the task of studying thermal conductivity and its degradation with burnup, densification-swelling behaviour and the FGR. In this paper, the response at low burnup ( < 7 MWd·kgU_(eq)~(-1)) of CSZ-based fuels loaded in IFA-652, is analysed by means of the TRANSURANUS code. To this purpose, a comprehensive modelling of the above mentioned un-irradiated fuels, mainly relying on the thermophysical characterisation performed at the JRC/ITU-Karlsruhe, has been implemented in a custom TRANSURANUS version (TU-IMF). A comparison of the code predictions vs. the experimental data, aimed at evaluating the early-stage under irradiation phenomena, particularly densification and relocation, has been performed.
机译:惰性基体燃料是通过在轻水堆中燃烧来减少-消除全球p库存的有前途的选择。这些燃料中的p以无U惰性基质相的形式存在,可以达到较高的燃烧效率,同时还能防止在辐照下产生新的p。几年来,ENEA已经对CSZ和氧化ria惰性矩阵进行了专门研究。自2000年6月以来,经合组织哈尔登HBWR正在对ENEA设想的创新燃料进行堆内测试(IFA-652实验)。 2005年底的注册燃尽量约为38 MWd·kgU_(eq)〜(-1),而45 MWd·kgU_(eq)〜(-1)(40 MWd·kgUOX_(eq)〜(-1))目标。燃料销配有燃料温度热电偶,内部压力传感器和燃料堆伸长传感器,其任务是研究热导率及其随着燃耗,致密膨胀特性和FGR的降低。本文利用TRANSURANUS代码分析了IFA-652中CSZ基燃料在低燃耗(<7 MWd·kgU_(eq)〜(-1)时的响应。为此,已在定制的TRANSURANUS版本(TU-IMF)中对上述未辐照燃料进行了全面建模,主要是依靠JRC / ITU-Karlsruhe进行的热物理表征。已经进行了代码预测与实验数据的比较,旨在评估辐射现象下的早期阶段,特别是致密化和重定位。

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