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Accident Testing of High-temperature reactor fuel elements from the HFR-EU1bis irradiation

机译:HFR-EU1bis辐射对高温反应堆燃料元件的事故测试

摘要

Four spherical high-temperature reactor fuel elements irradiated at the High Flux Reactor in Petten within the HFR-EU1bis irradiation campaign were transported to JRC-ITU for post-irradiation examination and accident testing. This article reports the accident tests performed on the first two fuel elements HFR-EU1bis/1 and HFR-EU1bis/3 with the Küfa device. The fuel elements were heated up to the irradiation temperature (1250 °C) and then to accident temperatures (1600 °C and 1700 °C, respectively) for durations of several hundred hours to simulate depressurization and loss-of-forced- circulation accidents (D-LOFC). The overall low fractional release of 85Kr and the absence of steps in the release curves suggest that no coated particles failed during the accident simulations. On the other hand, the fractional release of 134Cs and 137Cs was much higher than in previous experiments, indicating increased diffusion through the coating layers at the higher irradiation temperature, as confirmed with a finite-difference diffusion calculation. Finally, the calculation suggests that the high fractional silver and cesium releases at 1250 °C are due to a matrix contamination prior to the Küfa accident testing. © 2011 Elsevier B.V. All rights reserved.
机译:在HFR-EU1bis辐照活动中,在佩滕的高通量反应堆辐照的四个球形高温反应堆燃料元素被运送到JRC-ITU进行辐照后检查和事故测试。本文报告了使用Küfa设备对前两个燃料元件HFR-EU1bis / 1和HFR-EU1bis / 3进行的事故测试。将燃料元件加热到辐射温度(1250°C),然后加热到事故温度(分别为1600°C和1700°C),持续数百小时,以模拟降压和强制循环事故( D-LOFC)。整体较低的85 Kr分数释放和释放曲线中没有阶跃表明在事故模拟过程中没有涂层颗粒失效。另一方面,134Cs和137Cs的分数释放比以前的实验要高得多,这表明在较高的辐照温度下通过涂层的扩散增加,这通过有限差分扩散计算得到了证实。最后,计算结果表明,在1250°C时高比例的银和铯释放是由于库法事故测试之前的基质污染所致。 ©2011 Elsevier B.V.保留所有权利。

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