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首页> 外文期刊>EPJ Web of Conferences >Uncertainty evaluation of nuclear reaction model parameters using integral and microscopic measurements. Covariances evaluation with CONRAD code
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Uncertainty evaluation of nuclear reaction model parameters using integral and microscopic measurements. Covariances evaluation with CONRAD code

机译:使用积分和微观测量对核反应模型参数进行不确定性评估。使用CONRAD代码进行协方差评估

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In the [eV;MeV] energy range, modelling of the neutron induced reactions are based on nuclear reaction models having parameters. Estimation of co-variances on cross sections or on nuclear reaction model parameters is a recurrent puzzle in nuclear data evaluation. Major breakthroughs were asked by nuclear reactor physicists to assess proper uncertainties to be used in applications. In this paper, mathematical methods developped in the CONRAD code[2] will be presented to explain the treatment of all type of uncertainties, including experimental ones (statistical and systematic) and propagate them to nuclear reaction model parameters or cross sections. Marginalization procedure will thus be exposed using analytical or Monte-Carlo solutions. Furthermore, one major drawback found by reactor physicist is the fact that integral or analytical experiments (reactor mock-up or simple integral experiment, e.g. ICSBEP, …) were not taken into account sufficiently soon in the evaluation process to remove discrepancies. In this paper, we will describe a mathematical framework to take into account properly this kind of information.
机译:在[eV; MeV]能量范围内,中子诱发反应的建模基于具有参数的核反应模型。截面或核反应模型参数的协方差估计是核数据评估中的一个反复出现的难题。核反应堆物理学家要求取得重大突破,以评估要在应用中使用的适当不确定性。在本文中,将提出用CONRAD代码[2]开发的数学方法来解释各种不确定性的处理方法,包括实验性的(统计的和系统的)不确定性,并将其传播到核反应模型参数或截面。因此,将使用分析或蒙特卡洛解决方案公开边缘化程序。此外,反应堆物理学家发现的一个主要缺点是,在评估过程中没有足够快地考虑积分或分析实验(反应器模型化或简单积分实验,例如ICSBEP等),以消除差异。在本文中,我们将描述一个数学框架,以适当考虑此类信息。

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