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Optimization of a Dry, Mixed Nuclear Fuel Storage Array for Nuclear Criticality Safety.

机译:优化干混核燃料存储阵列以实现核临界安全。

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摘要

A dry storage array of used nuclear fuel at the Idaho National Laboratory contains a mixture of more than twenty different research and test reactor fuel types in up to 636 fuel storage canisters. New analysis demonstrates that the current arrangement of the different fuel-type canisters does not minimize the system neutron multiplication factor (keff), and that the entire facility storage capacity cannot be utilized without exceeding the subcritical limit (ksafe) for ensuring nuclear criticality safety. This work determines a more optimal arrangement of the stored fuels with a goal to minimize the system keff, but with a minimum of potential fuel canister relocation movements. The solution to this multiple-objective optimization problem will allow for both an improvement in the facility utilization while also offering an enhancement in the safety margin. The solution method applies stochastic approximation and a Tabu search metaheuristic to an empirical model developed from supporting MCNP calculations. The results establish an optimal relocation of between four to sixty canisters, which will allow the current thirty-one empty canisters to be used for storage while reducing the array keff by up to 0.018 +/- 0.003 relative to the current arrangement.
机译:爱达荷州国家实验室的一系列废旧核燃料干式存储包含多达636个燃料存储罐中的二十多种不同研究和测试反应堆燃料的混合物。新的分析表明,当前使用的不同燃料类型碳罐的布置不会使系统中子倍增系数(keff)最小化,并且在不超过确保核临界安全性的亚临界极限(ksafe)的情况下,无法利用整个设施的存储容量。这项工作确定了存储燃料的最佳布置,其目标是使系统keff最小化,但使潜在的碳罐重定位运动最小。该多目标优化问题的解决方案既可以改善设施利用率,又可以提高安全系数。求解方法将随机逼近和禁忌搜索元启发式方法应用于通过支持MCNP计算而开发的经验模型。结果确定了在四个到六十个碳罐之间的最佳重定位,这将允许使用当前的三十一个空碳罐进行存储,同时相对于当前布置将阵列keff降低多达0.018 +/- 0.003。

著录项

  • 作者

    Baranko, Benjamin T.;

  • 作者单位

    University of Idaho.;

  • 授予单位 University of Idaho.;
  • 学科 Nuclear engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 106 p.
  • 总页数 106
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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