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Study on neutronics design of accelerator driven subcritical reactor as future neutron source, part 1: static characteristics

机译:加速器驱动的亚临界反应堆作为未来中子源的中子学设计研究,第1部分:静态特性

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In this paper, a basic neutronics design for a future neutron source in Kyoto University Research Reactor Institute (KURRI) is presented. The neutron source is a final goal of so-called "Neutron Factory" project which is anticipated to be realized as an accelerator driven subcritical reactor (ADSR). To generate spallation neutrons, high-energy protons are injected into a target element installed at the center of the core. Spallation neutrons are multiplied in the subcritical reactor to be used as a neutron source for various research fields. The conceptual design was carried out on the basis of the current research reactor KUR in KURRI and was focused on examining its feasibility as a neutron source, for example, the neutron intensity, spectrum, neutron/gamma-ray flux ratio. The impact of the subcriticality, injected proton energy and target material on the performance of neutron source was examined through a kind of sensitivity studies. Furthermore, the power distribution inside the core was extensively investigated since a higher peaking factor in the ADSR may cause a problem in the heat removal and may restrict the usable neutron intensity. Calculations were carried out using the MCNPX code. Calculated results were compared with those of the KUR and the basic feasibility of the ADSR as a neutron source was confirmed.
机译:本文介绍了京都大学研究堆研究所(KURRI)中未来中子源的基本中子学设计。中子源是所谓“中子工厂”项目的最终目标,该项目有望实现为加速器驱动的亚临界反应堆(ADSR)。为了产生散裂的中子,将高能质子注入安装在堆芯中心的目标元件中。散裂中子在次临界反应堆中成倍增加,可用作各种研究领域的中子源。该概念设计是在目前位于KURRI的研究堆KUR的基础上进行的,重点是检查其作为中子源的可行性,例如中子强度,光谱,中子/伽马射线通量比。通过一种敏感性研究,研究了亚临界,注入质子能量和靶材料对中子源性能的影响。此外,由于ADSR中较高的峰值因数可能会导致散热问题并限制可用的中子强度,因此对铁心内部的功率分布进行了广泛研究。使用MCNPX代码进行计算。将计算结果与KUR的结果进行了比较,并确认了ADSR作为中子源的基本可行性。

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