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BURNUP CALCULATIONS OF THE JSI TRIGA REACTOR FUEL AND COMPARISON WITH MEASUREMENTS

机译:JSI Triga反应器燃料的燃烧计算和测量比较

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Fuel burnup of the JSI TRIGA was calculated by simulating complete operational history consisting of 240 different core configurations from 1966 to 2020. At the moment we are unable to perform burnup measurements, e.g. gamma spectroscopy on burned fuel elements, hence we used weekly measured excess reactivity as a reference point of different core configurations to verify the calculated core reactivity. Changes in reactivity due to burnup were assumed to be linear and this assumption was verified for burnup intervals smaller than 3~(MWd)/_(kg(HM)). The comparison was performed on 46 different core configurations with different type of fuel elements. The Serpent-2 calculations decently predict the rate of reactivity change on different cases, as 52 % of calculations are withing 1 σ and 86.9 % within 2 σ of the measurements for total number of 46 cases. Additional analysis was performed by comparing unit cell calculations of different fuel types. Four different types of TRIGA fuel were used to analyse burnup changes in LEU and HEU fuel, where positive reactivity feedback on burnup was observed for HEU fuel due to burnable absorbers. Serpent-2 and WIMSD-5B were compared on unit-cell basis where good agreement within 200 pcm of reactivity change for large burnup was observed. In addition neutron spectrum changes due to burnup were investigated using unit-cell calculations where 4 % increase of the thermal peak and 1 % decrease of fast peak of the spectrum was observed for typical fuel burnups of 20~(MWd)/_(kg(HM)), which approximately represents JSI TRIGA burnup at this moment.
机译:通过模拟由1966年至2020年的240个不同的核心配置组成的完整操作史而计算JSI Triga的燃料燃烧。目前我们无法执行燃烧测量,例如,我们无法执行燃尽的测量。燃烧燃料元件上的伽马光谱学,因此我们使用每周测量的过度反应性作为不同核心配置的参考点,以验证计算的核心反应性。假设由于燃尽引起的反应性的变化是线性的,并且验证了小于3〜(MWD)/ _(kg(hm))的燃尽间隔的这种假设。对46种不同类型的燃料元件进行的46个不同的核心配置进行了比较。蛇 - 2计算体面预测不同案例对反应性变化的速率,为52%的计算,在26例中的测量值的26例中,在2σ的2σ内的1σ和86.9%。通过比较不同燃料类型的单位细胞计算来执行额外的分析。四种不同类型的Triga燃料用于分析Leu和Heu燃料的燃烧变化,其中由于可燃吸收剂,Heu燃料观察到燃烧的正反应性反馈。比较了蛇 - 2和WiMSD-5B,在单细胞基础上进行了比较,其中观察到大燃烧的200pcm反应性变化的良好一致性。在由于燃耗除了中子谱的变化使用其中观察到20〜(MWD)的典型的燃料燃耗降低频谱的快速峰值的热峰的增加4%和1%的晶胞计算/ _(公斤(进行了调查HM)),此时大致代表JSI Triga燃烧。

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