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Study of Using Zirconium as a Reflector for Light Water Reactors

机译:用锆作为轻水反应堆的反射器的研究

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Zirconium is studied in this paper as a reflector for light water reactors. An exploratory analysis of using zirconium as a reflector for two simple reactor core models was carried out. The study showed that use of zirconium as a reflector has a valuable impact on the core reactivity. The study also showed that zirconium-water reflector is more effective than water reflector or stainless steel-water reflector. A typical Westinghouse 1150-MW(electric) pressurized water reactor was simulated using the Monte Carlo code MCNP5 as a case study. The simulation was carried out at the beginning of the core cycle of three batch cores with ~(235)U enrichments of 2.25, 2.8, and 3.3 wt%. The simulation showed that use of Zircaloy-4 reflector between the fuel assemblies and the core barrel adds a positive reactivity Δk_(eff) of 0.00686, while use of stainless steel reflector adds a positive reactivity Δk_(eff) of 0.0037. Use of Zircaloy-4 reflector increases the relative power density in the peripheral assemblies by ~38%. The power peaking factor is shifted from the center toward the periphery, and the assembly power peaking factor is reduced by ~13%. The use of Zircaloy-4 reflector with this increase of the reactivity of the peripheral assemblies increases the fast neutron current (E > 0.5 MeV) that reaches the reactor pressure vessel (RPV) by 70%, while the use of stainless steel reflector reduces it by 44%. Adjusting the ~(235)U enrichment in the peripheral assemblies batch to compensate for the excess reactivity caused by using Zircaloy-4 reflector reduces the ~(235)U enrichment by 8.5% in this batch. This means a reduction of 3.35% of the core ~(235)U average enrichment can be achieved by the use of Zircaloy-4 reflector. This reduction in the ~(235)U enrichment reduces the increase of the fast neutron current that reaches the RPV to 23%. In this case, increasing the water gap between the core barrel and the RPV by 3 cm reduces the fast neutron current that reaches the RPV to 95% of that of the basic case. The use of Zircaloy-4 reflector has a good effect on flattening the fission density distribution in the peripheral assemblies batch both before and after reducing ~(235)U enrichment.
机译:本文研究了锆作为轻水反应堆的反射器。对两个简单的反应堆堆芯模型使用锆作为反射器进行了探索性分析。研究表明,使用锆作为反射器对核心反应性具有重要影响。研究还表明,锆水反射器比水反射器或不锈钢水反射器更有效。以蒙特卡罗代码MCNP5为例,对典型的西屋1150兆瓦(电)压水堆进行了仿真。在三批岩心的核循环开始时进行了模拟,其中〜(235)U富集度为2.25、2.8和3.3 wt%。模拟表明,在燃料组件和芯管之间使用Zircaloy-4反射器可增加0.00686的正反应性Δk_(eff),而使用不锈钢反射器可增加0.0037的正反应性Δk_(eff)。使用Zircaloy-4反射镜可使外围组件的相对功率密度增加约38%。功率峰值因数从中心向外围移动,装配功率峰值因数降低了约13%。使用Zircaloy-4反射器并提高外围组件的反应性,可使到达反应堆压力容器(RPV)的快速中子流(E> 0.5 MeV)增大70%,而使用不锈钢反射器则将其降低减少了44%。调整外围组件批次中的〜(235)U富集以补偿由于使用Zircaloy-4反射器而导致的过量反应性,使该批次中的〜(235)U富集减少了8.5%。这意味着通过使用Zircaloy-4反射器,可以减少内核平均〜(235)U平均浓缩量的3.35%。 〜(235)U富集的减少将到达RPV的快中子流的增加减少到23%。在这种情况下,将堆芯管和RPV之间的水隙增加3 cm会使到达RPV的快速中子流减少到基本情况的95%。 Zircaloy-4反射镜的使用在减少〜(235)U富集之前和之后均能使周边组件批次中的裂变密度分布平坦化。

著录项

  • 来源
    《Nuclear science and engineering》 |2013年第2期|172-181|共10页
  • 作者

    Nader M. A. Mohamed;

  • 作者单位

    Atomic Energy Authority, ETRR-2, Cairo, Egypt;

  • 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
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:43:09

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