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首页> 外文期刊>Progress in Nuclear Energy >NEUTRONICS AND BURNUP ANALYSIS OF AN ACCELERATOR-BASED TRU-NITRIDE FUEL TRANSMUTATION SYSTEM WITH THE ATRAS CODE
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NEUTRONICS AND BURNUP ANALYSIS OF AN ACCELERATOR-BASED TRU-NITRIDE FUEL TRANSMUTATION SYSTEM WITH THE ATRAS CODE

机译:基于ATRAS编码的加速器的硝态氮燃料转化系统的神经网络和爆破分析。

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摘要

The neutronics and burnup analyses of an accelerator-based transmutation system with tungsten target and TRU-nitride fuel were performed with a newly developed code system named ATRAS (Accelerator-based Transmutation Reactor Analysis System). The ATRAS code is an integrated code system which can perform the hadronic cascade process above 20 MeV and neutron transport and core burnup process below 20 MeV with the spallation neutron source. The specifications of the transmutation system are investigated. The core consists of the central spallation target region and the surrounding TRU-mononitride fuel region. The core is driven by protons at an energy of 1.0 GeV. This system was also proposed as a benchmark problem in the "OECD NEA/NSC Benchmark on Physics aspects of Different Transmutation Concepts".
机译:使用名为ATRAS(基于加速器的Trans变反应堆分析系统)的新开发的代码系统,对具有钨靶和TRU-氮化物燃料的基于加速器的trans变系统进行了中子学和燃尽分析。 ATRAS代码是一个集成的代码系统,可以使用散裂中子源执行20 MeV以上的强子级联过程以及20 MeV以下的中子输运和堆芯燃烧过程。研究了system变系统的规格。核心由中央散裂目标区域和周围的TRU单氮化物燃料区域组成。核心由质子驱动,能量为1.0 GeV。该系统在“ OECD NEA / NSC关于不同Trans变概念的物理方面的基准”中也被提出作为基准问题。

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