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Use of International Criticality Safety Benchmark Evaluation Project Data to Benchmark a JEF2.2-Based Library for MONK

机译:使用国际关键安全性基准评估项目数据对基于JEF2.2的MONK库进行基准化

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Modern nuclear criticality safety analysis places great reliance on calculations performed using computer codes, in particular, those employing the Monte Carlo method of solution. In the United Kingdom the acknowledged standard Monte Carlo code for criticality safety assessment is MONK. The accuracy achievable with MONK is ultimately governed by the accuracy of the nuclear data employed and their representation within the code nuclear data library. The U.K. industry uses JEFF-based libraries, taking advantage of modern nuclear data evaluations. Following the release of a frozen version of the library (JEF2.2), a program of work was undertaken in the United Kingdom to develop nuclear data libraries for use in reactor physics, shielding, and criticality application codes and to provide benchmark evidence to support their use. For criticality, this involved developing a hyper-fine-group energy library for the MONK code and undertaking a large program of comparison calculations for selected international experiments. A significant contribution to this validation effort has been the high-quality experimental data from the International Criticality Safety Benchmark Evaluation Project (ICSBEP) International Handbook of Evaluated Critical Safety Benchmark Experiments. This paper summarizes the work involved in arriving at the current stage whereby the use of MONK in conjunction with a JEF2.2-based library is accepted within the U.K. nuclear industry. Specific examples are given, where ICSBEP has provided experimental evaluations for application areas previously unsupported by more traditional experimental data sources.
机译:现代核临界安全性分析非常依赖使用计算机代码执行的计算,尤其是采用蒙特卡洛方法的计算。在英国,公认的用于临界安全性评估的标准蒙特卡洛代码是MONK。 MONK可获得的精度最终取决于所用核数据的精度及其在代码核数据库中的表示形式。英国工业使用基于JEFF的库,以利用现代核数据评估的优势。在发布冻结版本的库(JEF2.2)之后,英国进行了一项工作计划,以开发用于反应堆物理,屏蔽和临界应用代码的核数据库,并提供基准证据以支持他们的使用。至关重要的是,这涉及为MONK代码开发超精细群能量库,并为选定的国际实验进行大型的比较计算程序。这种验证工作的重要贡献是来自国际关键安全性基准评估项目(ICSBEP)国际关键安全性基准实验评估手册的高质量实验数据。本文总结了当前阶段所涉及的工作,在此阶段,英国核工业接受了MONK与基于JEF2.2的库的结合使用。给出了具体示例,其中ICSBEP提供了以前没有更传统的实验数据源支持的应用领域的实验评估。

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