首页> 外文会议>International conference on mathematics and computational methods applied to nuclear science and engineering >BAYESIAN CALIBRATION OF REACTOR NEUTRON FLUX SPECTRUM USING ACTIVATION DETECTORS MEASUREMENTS: APPLICATION TO CALIBAN REACTOR
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BAYESIAN CALIBRATION OF REACTOR NEUTRON FLUX SPECTRUM USING ACTIVATION DETECTORS MEASUREMENTS: APPLICATION TO CALIBAN REACTOR

机译:活化检测器测量反应堆中子通量谱的贝叶斯校准:在校准反应堆中的应用

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In this paper, we present calibration methods in order to estimate reactor neutron flux spectrum and its uncertainties by using integral activation measurements. These techniques are performed using Bayesian and MCMC framework. These methods are applied to integral activation experiments in the cavity of the CALIBAN reactor. We estimate the neutron flux and its related uncertainties. The originality of this work is that these uncertainties take into account measurements uncertainties, cross-sections uncertainties and model error. In particular, our results give a very good approximation of the total flux and indicate that neutron flux from MCNP simulation for energies above about 5 MeV seems to overestimate the "real flux".
机译:在本文中,我们提出了校准方法,以便通过使用积分激活测量来估计反应堆中子通量谱及其不确定性。这些技术是使用贝叶斯和MCMC框架执行的。这些方法适用于CALIBAN反应器腔体内的整体活化实验。我们估计中子通量及其相关的不确定性。这项工作的独创性在于,这些不确定性考虑了测量不确定性,横截面不确定性和模型误差。特别地,我们的结果给出了总通量的非常好的近似值,并表明来自MCNP模拟的中子通量对于能量高于约5 MeV似乎似乎高估了“实际通量”。

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