首页> 外文会议>International conference on nuclear criticality safety >OPTIMIZATION OF HAFNIUM DIMENSIONS FOR THERMAL EPITHERMAL EXPERIMENTS (TEX) WITH HIGHLY ENRICHED URANIUM JEMIMA PLATES AND POLYETHYLENE
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OPTIMIZATION OF HAFNIUM DIMENSIONS FOR THERMAL EPITHERMAL EXPERIMENTS (TEX) WITH HIGHLY ENRICHED URANIUM JEMIMA PLATES AND POLYETHYLENE

机译:高度浓缩铀准金属板和聚乙烯的热表皮实验(TEX)的DI尺寸优化

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The goal of the US Nuclear Criticality Safety Program's Thermal Epithermal experiments (TEX) is to design and conduct new critical experiments to address high priority nuclear data needs from the nuclear criticality safety and nuclear data communities, with special emphasis on intermediate energy (0.625 eV -100 keV) assemblies. The second set of TEX experiments will use stacks of highly enriched uranium Jemima plates, hafnium (Hf) diluent plates, and polyethylene moderator plates to create assemblies that span a wide range of fission energy spectra, from thermal, through intermediate, to fast energies. As the hafnium plates need to be fabricated and represent a significant cost for this experiment, a parameter study examining experimental configurations with various Hf thicknesses was completed using KENO V.a to determine optimal dimensions. The Hf plate thicknesses were optimized based on three major design criteria: 1) ensuring thermal, intermediate, and fast critical configurations could be built, 2) creating assemblies with a height to diameter ratio of approximately one, and 3) maximizing sensitivity to hafnium isotope cross sections, as predicted by the SCALE/TSUNAMI package. Based on the calculations presented in this report, a hafnium thickness of 0.10 cm will result in compact critical assemblies using the existing Jemima plate inventory, while reducing Hf cost and ensuring adequate sensitivity of the system to hafnium cross sections.
机译:美国核临界安全计划的热超热实验(TEX)的目标是设计和进行新的临界实验,以满足核临界安全和核数据社区对高优先级核数据的需求,其中特别强调中间能量(0.625 eV- 100 keV)组件。第二组TEX实验将使用高浓缩铀Jemima板,ha(Hf)稀释板和聚乙烯减速板的堆栈来创建从热能,中间能到快速能的各种裂变能谱组件。由于需要制造the板,并且代表该实验的昂贵成本,因此使用KENO V.a完成了确定具有各种Hf厚度的实验配置的参数研究,以确定最佳尺寸。 Hf板的厚度基于以下三个主要设计标准进行了优化:1)确保可以建立热,中和快速关键配置,2)创建高度与直径之比约为1的组件,以及3)最大化对ha同位素的敏感性横截面,如SCALE / TSUNAMI软件包所预测。根据本报告中提供的计算,thickness厚度为0.10 cm,将使用现有的Jemima板材库存生产紧凑的关键组件,同时降低Hf成本并确保系统对ha截面的足够敏感性。

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