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Comparison of HEU and LEU neutron spectra in irradiation facilities at the Oregon State TRIGA~® Reactor

机译:俄勒冈州TRIGA〜®反应堆辐照设施中的HEU和LEU中子光谱的比较

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摘要

In 2008, the Oregon State TRIGA~® Reactor (OSTR) was converted from highly enriched uranium (HEU) fuel lifetime improvement plan (FLIP) fuel to low-enriched uranium (LEU) fuel. This effort was driven and supported by the Department of Energy's (DoE's) Reduced Enrichment for Research and Test Reactors (RERTR) program. The basis behind the RERTR program's ongoing conversion effort is to reduce the nuclear proliferation risk of civilian research and test reactors. The original intent of the HEU FLIP fuel was to provide fuel to research reactors that could be utilized for many years before a necessary refueling cycle. As a research reactor, the OSTR provides irradiation facilities for a variety of applications, such as activation analysis, fission-track dating, commercial isotope production, neutron radiography, prompt gamma characterization, and many others. In order to accurately perform these research functions, several studies had been conducted on the HEU FLIP fuel core to characterize the neutron spectra in various experimental facilities of the OSTR (Tiyapun, 1997; Ashbaker, 2005). As useful as these analyses were, they are no longer valid due to the change in fuel composition and the resulting alteration of core performance characteristics. Additionally, the core configuration (fuel reconfiguration) was altered between the HEU and LEU cores. This study characterizes the neutron spectra in various experimental facilities within and around the current LEU core. It also compares the spectra to that which was yielded in the HEU core through use of Monte Carlo n-Particle 5 (MCNP5) and experimental adjustment via a least-squares technique. The quantification of flux spectra are presented and analyzed so as to provide data that is representative of the OSTR's current state (Schickler, 2012).
机译:在2008年,俄勒冈州TRIGA〜®反应堆(OSTR)从高浓铀(HEU)燃料寿命改善计划(FLIP)燃料转换为低浓铀(LEU)燃料。这项努力是由美国能源部(DoE)的研究和测试反应堆降低浓缩(RERTR)计划推动和支持的。 RERTR计划正在进行的转换工作背后的基础是减少民用研究和测试反应堆的核扩散风险。 HEU FLIP燃料的初衷是向研究堆提供燃料,这些反应堆可以在必要的加油循环之前使用多年。作为研究反应堆,OSTR为各种应用提供了辐射设施,例如活化分析,裂变径迹测年,商业同位素生产,中子射线照相,快速伽马射线表征等。为了准确执行这些研究功能,已经对HEU FLIP燃料芯进行了多项研究,以表征OSTR各种实验设施中的中子光谱(Tiyapun,1997; Ashbaker,2005)。这些分析虽然有用,但由于燃料成分的变化以及由此导致的核心性能特征的改变,它们不再有效。此外,在HEU和LEU核心之间更改了核心配置(燃料重新配置)。这项研究表征了当前低浓铀核内和周围各种实验设施中的中子光谱。它还将光谱与使用蒙特卡罗n粒子5(MCNP5)和通过最小二乘技术进行的实验调整在HEU核中产生的光谱进行了比较。给出并分析了通量谱的量化,以便提供代表OSTR当前状态的数据(Schickler,2012年)。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2013年第9期|340-349|共10页
  • 作者单位

    Oregon State University, Department of Nuclear Engineering 116 Radiation Center, Oregon State University, Corvallis, OR 97331, United States;

    Oregon State University, Department of Nuclear Engineering 116 Radiation Center, Oregon State University, Corvallis, OR 97331, United States;

    Oregon State University, Department of Nuclear Engineering 116 Radiation Center, Oregon State University, Corvallis, OR 97331, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 00:43:37

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