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A Comparison of Pulsing Characteristics of the Oregon State University TRIGA Reactor with FLIP and LEU Fuel

机译:俄勒冈州立大学TRIGA反应堆与FLIP和LEU燃料的脉冲特性比较

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摘要

The Oregon State TRIGA Reactor (OSTR) was converted from highly enriched uranium (HEU) Fuel Life Improvement Program (FLIP) fuel to low-enriched uranium (LEU) fuel in October 2008. This effort was driven by the U.S. Department of Energy's Reduced Enrichment for Research and Test Reactor program. The new LEU fuel is 30/20 U-Zr_(1.6)H (30% uranium in the fuel matrix, 19.75 wt% enriched) in contrast to the FLIP fuel having U-Zr_(1.6)H (8.5% uranium in the fuel matrix, 70 wt% enriched). This new fuel composition provides the best match in performance of the available mixture ratios when compared to the previous FLIP fuel. To support conversion, a complete assessment and reevaluation of the OSTR Safety Analysis Report was performed. This evaluation included steady-state thermal-hydraulic and neu-tronics characterizations of the HEU and LEU cores as well as a transient behavior (pulse) analysis of both core types. This paper presents a summary of the methods used and results produced during the pulse analysis identifying power, temperature, and reactivity during pulsed operation for the FLIP and new LEU fuel. This analysis was performed using RELAP5-3D version 2.4.2 and point reactor kinetics simulation software; these two methods are found to agree very well. We discuss the differences between the two fuels and the impact of pulse behavior on the safety limits for the converted reactor.
机译:俄勒冈州TRIGA反应堆(OSTR)于2008年10月从高浓铀(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的降低浓缩度推动的研究和测试反应堆计划。与具有U-Zr_(1.6)H(燃料中的8.5%铀)的FLIP燃料相比,新的LEU燃料为30/20 U-Zr_(1.6)H(燃料中的30%铀,富集19.75 wt%)基质,浓缩了70 wt%)。与以前的FLIP燃料相比,这种新的燃料成分在可用混合比的性能方面提供了最佳匹配。为了支持转换,对OSTR安全分析报告进行了完整的评估和重新评估。该评估包括HEU和LEU磁芯的稳态热工液压和中子学表征,以及两种磁芯类型的瞬态行为(脉冲)分析。本文概述了在脉冲分析过程中识别FLIP和新LEU燃料的功率,温度和反应性时使用的方法和产生的结果。该分析是使用RELAP5-3D 2.4.2版和点反应器动力学仿真软件进行的;发现这两种方法非常吻合。我们讨论了两种燃料之间的差异以及脉冲行为对转换后反应堆安全极限的影响。

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  • 来源
    《Nuclear science and engineering》 |2012年第2期|p.150-164|共15页
  • 作者单位

    Oregon State University Department of Nuclear Engineering and Radiation Health Physics Corvallis, Oregon 97330;

    Oregon State University Department of Nuclear Engineering and Radiation Health Physics Corvallis, Oregon 97330;

    Oregon State University Department of Nuclear Engineering and Radiation Health Physics Corvallis, Oregon 97330;

    Oregon State University Department of Nuclear Engineering and Radiation Health Physics Corvallis, Oregon 97330;

    Oregon State University Department of Nuclear Engineering and Radiation Health Physics Corvallis, Oregon 97330;

    University of Michigan Department of Nuclear Engineering and Radiological Sciences Ann Arbor, Michigan 48103;

  • 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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