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HIGH-TEMPERATURE REACTOR FUEL TECHNOLOGY IN THE RAPHAEL EUROPEAN PROJECT

机译:拉斐尔欧洲项目中的高温反应器燃料技术

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Within the scope of the 5th EURATOM Framework Programme (FP) for the HTR-F and HTR-F1 projects, a new 4-year integrated project on very high temperature reactors (RAPHAEL: ReActor for Process Heat And Electricity) was started in April 2006 as part of the 6th Framework Programme. The Sub-Project on Fuel Technology (SP-FT) is one of eight sub-projects constituting the RAPHAEL project. R&D conducted in this sub-project focuses on understanding fuel behaviour, determining the limits of state-of-the-art fuel, and developing potential performance improvements. Fabrication processes were worked out for alternative fuel kernel composition (UCO instead of UO_2) and coating (ZrC instead of SiC):i) UCO microstructure reduces fission product migration and is thus considered superior to UO_2 under high burn-ups and high temperature gradients. For this reason, themanufacturing feasibility of UCO kernels using modified external sol-gel routes was addressed. The calcining and sintering steps were particularly studied. ii) For its better high temperature performance, ZrC is a candidate coating material for replacing SiC in TRISO (TRistructural ISOtropic) particles. One of the objectives was therefore to deposit a stoichiometric ZrC layer without impurities. An "analytical irradiation" experiment currently performed in the HFR - named PYCASSO for PYrocarbon irradiation for Creep And Swelling/Shrinkage of Objects -was set up to measure the changes in coating material properties as a function of neutron fluence, with samples coming from the new fabrication process. This experiment was started in April 2008 and will provide data on particle component behaviour under irradiation. This data is required to upgrade material models implemented in the ATLAS fuel simulation code. The PYCASSO irradiation experiment is a true Generation IV VHTR effort, with Korean and Japanese samples included in the irradiation. Further RAPHAEL results will be made available to the GIF VHTR Fuel and Fuel Cycle project partners in the future.Post-irradiation examinations and heat-up tests performed on fuel irradiated in an earlier project are being performed to investigate the behaviour of state-of-the-art fuel in VHTR normal and accident conditions. Very interesting results from destructive examinations performed on the HFR-EU1bis pebbles were obtained, showing a clear temperature (and high burn-up) influence on both kernel changes (including fission product behaviour) and the coating layers.Based on fuel particle models established earlier, the fuel modelling capabilities could be further improved:i) Modelling of fuel elements containing thousands of particles is expected to enable a statistical approach to mechanical particle behaviour and fission product release.ii) A database on historical and new fuel properties was built to enable validation of models;This paper reports on recent progress and main results of the RAPHAEL sub-project on fuel technology.
机译:在HTR-F和HTR-F1项目的第五个EURATOM框架计划(FP)范围内,于2006年4月启动了一个新的为期四年的超高温反应堆综合项目(RAPHAEL:过程热和电反应堆)作为第六个框架计划的一部分。燃料技术子项目(SP-FT)是构成RAPHAEL项目的八个子项目之一。在该子项目中进行的研发专注于了解燃油行为,确定最新燃油的极限以及开发潜在的性能改进。 为替代燃料核成分(UCO代替UO_2)和涂层(ZrC代替SiC)制定了制造工艺: i)UCO的微结构减少了裂变产物的迁移,因此在高燃耗和高温梯度下被认为优于UO_2。因此, 解决了使用改进的外部溶胶-凝胶路线的UCO内核的制造可行性。对煅烧和烧结步骤进行了专门研究。 ii)ZrC具有更好的高温性能,是替代TRISO(结构同质性)颗粒中SiC的候选涂层材料。因此,目的之一是沉积无杂质的化学计量的ZrC层。 在HFR中目前进行的“分析辐照”实验-名为PYCASSO,用于对物体的蠕变和膨胀/收缩进行热解碳辐照-测量涂层材料性质随中子注量的变化,样品来自新的制造过程。该实验于2008年4月开始,将提供有关辐照下颗粒成分行为的数据。需要此数据来升级ATLAS燃料模拟代码中实现的材料模型。 PYCASSO辐照实验是真正的IV代VHTR实验,辐照中包括了韩国和日本样品。将来,RAPHAEL的更多结果将提供给GIF VHTR燃料和燃料循环项目合作伙伴。 正在对早期项目中进行辐照的燃料进行辐照后检查和加热测试,以研究最新燃料在VHTR正常和事故情况下的行为。从对HFR-EU1bis卵石进行的破坏性检查中获得了非常有趣的结果,显示出明显的温度(和高燃尽)对籽粒变化(包括裂变产物行为)和涂层的影响。 基于较早建立的燃料粒子模型,燃料建模能力可以进一步提高: i)包含数千个颗粒的燃料元件的建模有望实现一种机械颗粒行为和裂变产物释放的统计方法。 ii)建立了关于历史和新燃料特性的数据库,以便能够对模型进行验证; 本文报告了RAPHAEL燃料技术子项目的最新进展和主要成果。

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