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NUCLEAR DATA V&V ANALYSIS FOR FUSION APPLICATIONS: INTEGRAL BENCHMARKS AND DECAY DATA

机译:核数据V& V分析融合应用:积分基准和衰减数据

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A reliable estimation of the operational parameters is one of the primary concerns in the design of magnetic fusion devices such as ITER and DEMO. Methods of diagnostics and control over the critical plasma parameters determining its stability and efficiency rely on the high-energy neutron field monitoring. Extreme operational environment, such as high-energy neutron flux, electromagnetic radiation, and high temperatures might reduce the performance of the detector systems. Therefore, research and development activities in detector prototyping are carried out to address this problem. To predict the performance of the detector materials, simulations using the latest releases of the nuclear data libraries as input for the inventory codes are carried out. This paper describes the latest validation and verification (V&V) benchmark exercise for FISPACT-II & TENDL-2017 based on the fusion decay heat measurements performed at the Japanese FNS facility for the materials in the diagnostic components for the radiation measurements. The breakdown of decay-heat contributions from individual radionuclides have been employed to interpret the simulated results, benchmark the data against the experimental measurements, and revise the neutron-induced reactions cross-section and decay data for the associated radionuclides for the upcoming release of the TENDL-2019 nuclear data library.
机译:操作参数的可靠估计是设计磁性融合装置(如迭代和演示)的主要问题之一。诊断方法和控制临界等离子体参数确定其稳定性和效率依赖于高能中子田间监测。极端操作环境,如高能量中子磁通,电磁辐射和高温可能会降低探测器系统的性能。因此,进行了检测器原型的研究和开发活动,以解决这个问题。为了预测检测器材料的性能,执行使用最新版本的核数据库作为库存代码的输入进行模拟。本文介绍了FISPACT-II&amp的最新验证和验证(V& v)基准练习;基于在辐射测量的诊断组件中的日本FNS设施的日本FNS设施上进行的融合衰减热测量的趋势衰减热测量。从单个放射性核素的衰减热贡献的崩溃已经用于解释模拟结果,以防止数据的数据进行基准测试,并修改中子诱导的反应横截面和衰减数据,以获得相关的放射性核素的即将释放的释放Tendl-2019核数据库。

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