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Optimization of enrichment distributions in nuclear fuel assemblies loaded with uranium and plutonium via a modified linear programming technique.

机译:通过改进的线性规划技术优化装载铀和p的核燃料组件中的浓缩分布。

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摘要

A methodology to optimize enrichment distributions in Light Water Reactor (LWR) fuel assemblies is developed and tested. The optimization technique employed is the linear programming revised simplex method, and the fuel assembly's performance is evaluated with a neutron transport code that is also utilized in the calculation of sensitivity coefficients. The enrichment distribution optimization procedure begins from a single-value (flat) enrichment distribution until a target, maximum local power peaking factor, is achieved. The optimum rod enrichment distribution, with 1.00 for the maximum local power peaking factor and with each rod having its own enrichment, is calculated at an intermediate stage of the analysis. Later, the best locations and values for a reduced number of rod enrichments is obtained as a function of a target maximum local power peaking factor by applying sensitivity to change techniques. Finally, a shuffling process that assigns individual rod enrichments among the enrichment groups is performed. The relative rod power distribution is then slightly modified and the rod grouping redefined until the optimum configuration is attained. To verify the accuracy of the relative rod power distribution, a full computation with the neutron transport code using the optimum enrichment distribution is carried out.;The results are compared and tested for assembly designs loaded with fresh Low Enriched Uranium (LEU) and plutonium Mixed OXide (MOX) fuels. MOX isotopics for both reactor-grade and weapons-grade plutonium were utilized to demonstrate the wide-range of applicability of the optimization technique. The features of the assembly designs used for evaluation purposes included burnable absorbers and internal water regions, and were prepared to resemble the configurations of modern assemblies utilized in commercial Boiling Water Reactors (BWRs) and Pressurized Water Reactors (PWRs). In some cases, a net improvement in the relative rod power distribution or in the number of enrichments is accomplished with this methodology.
机译:开发并测试了优化轻水反应堆(LWR)燃料组件中浓缩分布的方法。所采用的优化技术是线性编程修订的单纯形法,并且使用中子传输代码评估燃料组件的性能,该中子传输代码也用于计算灵敏度系数。浓缩分布优化过程从单值(平坦)浓缩分布开始,直到达到目标(最大局部功率峰值因子)为止。在分析的中间阶段计算最佳棒浓缩分布,其中最大局部功率峰值因子为1.00,并且每个棒都有自己的富集。后来,通过将灵敏度应用于变更技术,可以根据目标最大局部功率峰值因子,获得减少的棒浓缩数量的最佳位置和值。最后,执行改组过程,在富集组之间分配单个杆富集。然后,对杆的相对功率分布进行轻微修改,并重新定义杆组,直到获得最佳配置。为了验证相对杆功率分布的准确性,使用最佳富集分布对中子输运代码进行了完整计算;对结果进行了比较并测试了装有新鲜低浓铀(LEU)和p混合气的装配设计氧化物(MOX)燃料。反应堆级和武器级p的MOX同位素被用来证明优化技术的广泛适用性。用于评估目的的组件设计的特征包括可燃吸收器和内部水区域,并准备好类似于商用沸水反应堆(BWR)和压水反应堆(PWR)中使用的现代组件的配置。在某些情况下,这种方法可以实现相对杆功率分布或浓缩数量的净改善。

著录项

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Nuclear.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 206 p.
  • 总页数 206
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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