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VALIDATION OF CONTINUOUS ENERGY SENSITIVITY COEFFICIENTS CALCULATIONS IN THE MORET 5 CODE

机译:莫雷特5代码中连续能量灵敏度系数计算的验证

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A continuous-energy sensitivity coefficients calculation capability has been developed in the MORET 5 Monte Carlo code recently. As discussed in this paper, it relies on the differential operator method, an adjoint weighting model (to avoid calculating the fission source derivatives) and a constrained sensitivity coefficient model for sensitivity profiles to distributions such as, for instance, the fission spectrum. For now, the coefficients are provided per medium, per isotope, per reaction on an energy binning defined by the user. The sensitivity coefficients are currently available for the following quantities: total, elastic scattering, total inelastic scattering, fission, total capture and radiative capture cross sections, average neutron produced by fission and fission spectrum. This paper deals with the validation of this new feature in the MORET code on several benchmarks and applications with various energy spectra and geometrical configurations. This validation is performed through the UACSA expert group and the Jezebel ICSBEP benchmarks, but also thanks to calculations performed in the frame of experimental program design in the STACY facility. Comparisons are made using the MCNP6.1 code and the SCALE6.1 package as references. Preliminary results show a pretty good agreement between the different software.
机译:最近在Moret 5 Monte Carlo Code中开发了连续能量灵敏度系数计算能力。如本文中所讨论的,它依赖于差分操作方法,伴随权加权模型(以避免计算裂变源导数)和用于敏感性简档的受限灵敏度系数模型,例如裂解谱。目前,每个培养基,每个同位素提供系数,每位同位素,每个反应由用户定义的能量排列。目前可用于以下数量的灵敏度系数:总,弹性散射,总体间隙散射,裂变,总捕获和辐射捕获横截面,裂变和裂变光谱产生的平均中子。本文讨论了在多个基准测试和应用中的泥晶代码中验证了具有各种能谱和几何配置的应用。此验证是通过UACSA专家组和Jezebel ICSBEP基准进行的,而且还要感谢在静态设施中实验程序设计框架中执行的计算。使用MCNP6.1代码和Scale6.1包作为参考来进行比较。初步结果显示不同的软件之间非常愉快。

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