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Neutron Production in Semiprototypic Target Assemblies for Accelerator Transmutation Technology

机译:加速器Ass变技术的半原型靶组件中子产生

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Integral neutron production was measured by the manganese-activation technique, on targets semiprototypic of spallation-neutron-driven transmutation systems, after irradiation by 400-MeV to 2.0-GeV protons. The purpose of these experiments was to provide data to benchmark nuclear transport codes for targets irradiated by protons in this energy range, as well as to evaluate design options to maximize the production of spoliation neutrons in various targets under consideration. These computer codes are used to design accelerator systems that will utilize spoliation neutrons for the generation of tritium, transmutation of nuclear waste, production of radioisotopes, and other scientific investigations. Some of the targets used in this investigation were semiprototypic of the proposed Accelerator Production of Tritium target. Other targets were included to provide data to test the computational models in the codes. Total neutron production is the main factor that determines the economics of transmutation for a particular accelerator design. Comparisons of the data reported here with calculations from computer simulations show agreement to within 15% over the entire energy region for most of the targets.
机译:在400-MeV到2.0-GeV质子辐照后,通过分裂活化中子驱动的trans变系统的半原型靶标,通过锰活化技术测量了整体中子产生。这些实验的目的是为在该能量范围内的质子辐射的目标提供基准核运输代码的数据,并评估设计方案以最大程度地考虑所考虑的各种目标中产生的裂变中子。这些计算机代码用于设计加速器系统,该系统将利用裂变中子产生generation,核废物的trans变,放射性同位素的产生以及其他科学研究。本研究中使用的一些目标是拟议的Acc生产加速器目标的半原型。还包括其他目标,以提供数据来测试代码中的计算模型。中子的总产量是决定特定加速器设计trans变经济性的主要因素。此处报告的数据与计算机模拟计算得出的比较结果表明,对于大多数目标而言,在整个能量范围内一致性达到15%以内。

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