Košťál Michal, Schulc Martin, Šoltés Jaroslav, Losa Evžen, Viererbl Ladislav, Matěj Zdeněk, Cvachovec František, Rypar Vojtěch
Research Center Rez Ltd, 250 68 Husinec-Rez 130, Czech Republic.
Research Center Rez Ltd, 250 68 Husinec-Rez 130, Czech Republic.
Appl Radiat Isot. 2018 Dec;142:160-166. doi: 10.1016/j.apradiso.2018.08.028. Epub 2018 Sep 3.
The correct description of neutron transport in lead is an essential task for correct description of tritium production in the DEMO (DEMOnstration Power Station) breeding blanket because some concepts deal with lead as a major component: namely the WCLL (water cooled lithium lead blanket), HCLL (helium cooled lithium lead blanket), and DCLL (dual cooled lithium lead blanket). Concerning the improvement of the knowledge about the transport of fast neutrons in lead, a set of experiments and calculations was carried out to study this problem with a well-defined neutron beam. The neutron flux behind various lead arrangements positioned along the beam axis was measured using a stilbene scintillation crystal (10 mm × 10 mm) with neutron and gamma pulse shape discrimination. The measurement was performed along the beam axis and in the case of the thick target also above the axis, to estimate the neutron angular scatter in lead. The calculations were realized using MCNP6 with various nuclear data libraries. Discrepancies in the angular distribution description in the energy region of about 1 MeV were discovered by these experiments.
正确描述铅中的中子输运,对于正确描述示范电站(DEMO)增殖包层中的氚产生至关重要,因为有些概念将铅视为主要成分,即水冷锂铅包层(WCLL)、氦冷锂铅包层(HCLL)和双冷锂铅包层(DCLL)。关于提高对铅中快中子输运的认识,开展了一系列实验和计算,用定义明确的中子束研究这一问题。使用具有中子和伽马脉冲形状甄别功能的芪闪烁晶体(10毫米×10毫米),测量沿束轴放置的各种铅装置后方的中子通量。测量是沿束轴进行的,对于厚靶情况,也在轴上方进行,以估计铅中的中子角散射。计算使用MCNP6和各种核数据库来实现。这些实验发现,在约1兆电子伏能量区域的角分布描述中存在差异。