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首页> 外文期刊>Annals of nuclear energy >Interpretation of experimental results from moderate-power in-pile testing of a Pu-Er-Zr-oxide inert matrix fuel
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Interpretation of experimental results from moderate-power in-pile testing of a Pu-Er-Zr-oxide inert matrix fuel

机译:Pu-Er-Zr-氧化物惰性基质燃料的中等功率堆内测试的实验结果解释

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Pu-Er-Zr oxide as an inert matrix fuel (IMF) could be an attractive option for a once-through LWR strategy aimed at reducing the currently growing plutonium stockpiles. A basic question related to the practical introduction of such an IMF into a current-day LWR, without affecting any significant change in fuel element design and core performance, is the irradiation behaviour of the proposed IMF. The present paper reports first results from a corresponding validation experiment which has been launched recently, viz. the comparative in-pile testing of specially fabricated IMF and PuO_2/UO_2 mixed-oxide (MOX) fuel rodlets in the Halden reactor. The maximum linear power rating was limited to about 25 kW/m during the currently reported initial testing phase, as compared to the design value of 35 kW/m to be aimed at during subsequent cycles at Halden. While fuel centre-line temperatures were found to be within the expected range for both fuel types, the variation of pressure in the rodlets has clearly indicated significant densification in the IMF specimens, with fission gas release being not detectable at the low burnups achieved to date. A possible sintering model for the IMF is proposed to explain the experimental results obtained during this moderate-power testing phase, viz. the apparent "geometrical stability" of the IMF in spite of its strong initial densification.
机译:Pu-Er-Zr氧化物作为惰性基质燃料(IMF)可能是旨在减少当前growing存量的一次性LWR策略的一个有吸引力的选择。在不影响燃料元件设计和核心性能的任何重大变化的情况下,将这种IMF实际引入当前的轻水堆中的一个基本问题是所提议的IMF的辐照行为。本文报告了最近启动的相应验证实验的第一个结果,即。在Halden反应堆中对特制的IMF和PuO_2 / UO_2混合氧化物(MOX)燃料小棒进行的堆中比较试验。在当前报告的初始测试阶段,最大线性额定功率被限制在约25 kW / m,而在随后的Halden循环中,设计目标值为35 kW / m。虽然发现两种燃料类型的燃料中心线温度都在预期范围内,但是小棒中压力的变化清楚地表明了IMF标本中的显着致密化,在迄今为止实现的低燃耗下无法检测到裂变气体的释放。提出了一种可能的IMF烧结模型,以解释在中等功率测试阶段获得的实验结果。尽管IMF具有强大的初始致密性,但它仍具有明显的“几何稳定性”。

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