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Fuel burnup analysis of the TRIGA Mark II reactor at the University of Pavia

机译:帕维亚大学TRIGA Mark II反应堆的燃料燃烧分析

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摘要

A time evolution model was developed to study fuel burnup for the TRIGA Mark II reactor at the University of Pavia. The results were used to predict the effects of a complete core reconfiguration and the accuracy of this prediction was tested experimentally. We used the Monte Carlo code MCNP5 to reproduce system neutronics in different operating conditions and to analyze neutron fluxes in the reactor core. The software that took care of time evolution, completely designed in-house, used the neutron fluxes obtained by MCNP5 to evaluate fuel consumption. This software was developed specifically to keep into account some features that differentiate low power experimental reactors from those used for power production, such as the daily ON/OFF cycle and the long fuel lifetime. These effects can not be neglected to properly account for neutron poison accumulation. We evaluated the effect of 48 years of reactor operation and predicted a possible new configuration for the reactor core: the objective was to remove some of the fuel elements from the core and to obtain a substantial increase in the Core Excess reactivity value. The evaluation of fuel burnup and the reconfiguration results are presented in this paper.
机译:开发了一个时间演化模型来研究帕维亚大学TRIGA Mark II反应堆的燃料燃耗。结果被用来预测完整堆芯重新配置的效果,并通过实验测试了该预测的准确性。我们使用了蒙特卡罗代码MCNP5来在不同的运行条件下重现系统中子,并分析了反应堆堆芯中的中子通量。内部完全设计​​的负责时间演化的软件使用MCNP5获得的中子通量来评估燃料消耗。专门开发此软件是为了考虑到一些将低功率实验反应堆与用于发电的反应堆区分开的功能,例如每天的ON / OFF循环和较长的燃料寿命。不能忽略这些影响来适当地解释中子毒物的积累。我们评估了反应堆运行48年的影响,并预测了反应堆堆芯可能采用的新配置:目标是从堆芯中去除一些燃料元素并大幅增加堆芯过剩反应性值。本文介绍了燃料燃耗的评估和重构结果。

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