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CONSIDERATIONS ON A VALIDATION MATRIX FOR SYSTEM ANALYSIS CODES OF PEBBLE BED MODULAR HTRS

机译:卵形模块化HTRS系统分析代码验证矩阵的考虑

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The modular High Temperature Reactor (HTR) experienced substantial development over the past two decades in China. At present, the 10 MW_(th), experimental reactor HTR-10 is under operation and the 200 MW_e demonstration power plant HTR-PM is in its commissioning phase. Both of the HTR-10 and the HTR-PM are pebble bed HTRs designed by the institute of nuclear and new energy technology (INET) of Tsinghua University. In the design and analysis of modular HTRs, system analysis codes play an important role in predicting the reactor behaviour under both normal operation and accident conditions. According to China's nuclear safety regulations, codes and models employed in the HTR system analysis must be verified and validated in conformance with a specified procedure. Thus, a flowchart is recommended in this paper for the validation of system analysis codes. As the first step of the flowchart, a phenomena identification and ranking table (PIRT) process has been performed on the subject of the HTR-PM thermal hydraulics and accident analysis. In this paper, the PIRT process is introduced and the PIRT results are presented. With the purpose of developing a validation matrix, test data have been collected mainly from the operation history and various tests of the HTR-10. On such basis, some considerations on developing a validation matrix are discussed to benefit the code validation work.
机译:在过去的二十年中,模块化高温反应堆(HTR)在中国取得了长足的发展。目前,正在运行的10 MW_th实验堆HTR-10和200 MW_e示范电站HTR-PM处于调试阶段。 HTR-10和HTR-PM都是由清华大学核能和新能源技术研究所(INET)设计的卵石床HTR。在模块化高温气冷堆的设计和分析中,系统分析代码在预测正常运行和事故条件下的反应堆行为方面都起着重要作用。根据中国的核安全法规,高温气冷堆系统分析中使用的代码和模型必须按照指定的程序进行验证和确认。因此,在本文中建议使用流程图来验证系统分析代码。作为流程图的第一步,已经对HTR-PM热液压和事故分析进行了现象识别和排序表(PIRT)处理。本文介绍了PIRT过程,并给出了PIRT结果。为了建立验证矩阵,主要从HTR-10的运行历史和各种测试中收集了测试数据。在此基础上,讨论了一些有关开发验证矩阵的注意事项,以使代码验证工作受益。

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