首页> 外文期刊>Nuclear Engineering and Design >PCI analysis of a commercial PWR using BISON fuel performance code
【24h】

PCI analysis of a commercial PWR using BISON fuel performance code

机译:使用BISON燃油性能代码对商用压水堆进行PCI分析

获取原文
获取原文并翻译 | 示例
       

摘要

Through the early 2000's, nuclear fuel cladding failure resulting from pellet-cladding interaction in commercial pressurized water reactor fuel was managed successfully by incorporating power ramp restrictions. Within the past decade, however, cladding failures have again begun to appear, often correlated to missing pellet surface defects, and further aggravated by modern reactor operating strategies demanding higher fuel duty operations. In response, renewed efforts in fuel behavior modeling and simulation are being pursued to improve our understanding of the conditions that can lead to missing pellet surface related cladding failure. This paper describes a methodology used to model pellet-cladding interaction related failures observed in commercial pressurized water reactors using the BISON fuel performance code developed at Idaho National Laboratory. In order to accomplish this goal, a three-step process is followed: 1) A failure-stress threshold is developed by using BISON code to model ramp test with known pellet-clad interaction related failures, 2) BISON analysis is applied to a commercial pressurized water reactor cycle startup with one rod confirmed to contain a missing pellet surface defect, and 3) an missing pellet surface sensitivity study of a cycle startup of the same commercial pressurized water reactor which contained a failed fuel rod of un-identified type. The analysis results described in this paper serve to illustrate the BISON code capabilities for modeling pressurized water reactor fuel subjected to higher duty power events.
机译:在2000年代初期,通过结合功率斜坡限制,成功地控制了商用压水堆燃料中颗粒-包层相互作用导致的核燃料包层失效。然而,在过去的十年中,熔覆层故障再次开始出现,通常与缺少颗粒表面缺陷有关,并且由于现代反应堆运行策略要求更高的燃料负荷运行而进一步加剧。作为响应,正在努力在燃料行为建模和仿真方面进行新的努力,以增进我们对可能导致缺少颗粒表面相关包层失效的条件的理解。本文介绍了一种方法,该方法用于使用爱达荷州国家实验室制定的BISON燃料性能代码对在商用压水堆中观察到的颗粒-包层相互作用相关的故障进行建模。为了实现此目标,需要执行以下三个步骤:1)通过使用BISON代码对带有已知的颗粒-包覆层相互作用相关故障的斜坡测试进行建模来开发故障应力阈值; 2)BISON分析应用于商业应用用一根棒进行的加压水反应堆循环启动,确认其缺少颗粒表面缺陷,并且3)对同一商用加压水反应堆的循环启动进行的颗粒表面敏感性缺失研究,该反应釜包含未确定类型的失效燃料棒。本文中描述的分析结果用于说明BISON代码功能,该功能可用于模拟承受较高功率事件的压水堆燃料。

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