首页> 外文会议>International conference on the physics of reactors;PHYSOR 2012 >VALIDATION OF THE U.S. NRC NGNP EVALUATION MODEL WITH THE HTTR
【24h】

VALIDATION OF THE U.S. NRC NGNP EVALUATION MODEL WITH THE HTTR

机译:HTTR对美国NRC NGNP评估模型的验证

获取原文

摘要

The High Temperature Test Reactor (HTTR) was modeled with TRITON/PARCS. Traditional light water reactor (LWR) homogenization methods rely on the short mean free paths of neutrons in LWR. In gas-cooled, graphite-moderated reactors like the HTTR neutrons have much longer mean free paths and penetrate further into neighboring assemblies than in LWRs. Because of this, conventional lattice calculations with a single assembly may not be valid. In addition to difficulties caused by the longer mean free paths, the HTTR presents unique axial and radial heterogeneities that require additional modifications to the single assembly homogenization method. To handle these challenges, the homogenization domain is decreased while the computational domain is increased. Instead of homogenizing a single hexagonal fuel assembly, the assembly is split into six triangles on the radial plane and five blocks axially in order to account for the placement of burnable poisons. Furthermore, the radial domain is increased beyond a single fuel assembly to account for spectrum effects from neighboring fuel, reflector, and control rod assemblies. A series of five two-dimensional cases, each closer to the full core, were calculated to evaluate the effectiveness of the homogenization method and cross-sections.
机译:高温测试反应器(HTTR)用Triton / Parc进行建模。传统的轻型水反应器(LWR)均质化方法依赖于LWR中中子的短平均自由路径。在气冷式中,像HTTR中子一样的石墨调节反应器具有比LWR在LWR中的相邻组件中更长的平均值。因此,具有单个组件的传统晶格计算可能无效。除了较长的自由路径引起的困难之外,HTTR还具有独特的轴向和径向异质性,需要对单个组件均质化方法进行额外的修改。为了处理这些挑战,在计算领域增加时,均化结构域减少。该组件代替将单个六边形燃料组件均匀化,而是将径向平面上的六个三角形分成六个三角形,以轴向地轴向地,以便考虑可燃毒药的放置。此外,径向域的增加超出单个燃料组件,以考虑来自相邻燃料,反射器和控制杆组件的光谱效应。计算出一系列五维案例,每个二维病例均接近全核,以评估均质化方法和横截面的有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号