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Basic concept for an accelerator-driven subcritical system to be used as a long-pulse neutron source for Condensed Matter research

机译:加速器驱动的亚临界系统用作凝聚态研究的长脉冲中子源的基本概念

摘要

A model for an accelerator-driven subcritical system to be operated as a source of cold neutrons for Condensed Matter research is developed at the conceptual level. Its baseline layout relies upon proven accelerator, spalattion target and fuel array technologies, and consists in a proton accelerator able to deliver some 67.5 mA of proton beam with kinetic energy 0.6 GeV, a pulse length of 2.86 ms, and repetition rate of 14 Hz. The particle beam hits a target of conventional design that is surrounded by a multiplicative core made of fissile/fertile material, composed by a subcritical array of fuel bars made of aluminium Cermet cooled by light water poisoned with boric acid. Relatively low enriched uranium is chosen as fissile material. An optimisation of several parameters is carried out, using as components of the objective function several characteristics pertaining the cold neutron pulse. The results show that the optimal device will deliver up to 80% of the cold neutron flux expected for some of the ongoing projects using a significantly lower proton beam power than that managed in such projects. The total power developed within the core rises up to 22.8 MW, and the criticality range shifts to a final keff value of around 0.9 after the 50 days cycle. © 2014 Elsevier B.V.
机译:在概念层面上开发了一种加速器驱动的亚临界系统模型,该系统将作为冷中子源用于凝聚态研究。它的基线布局依赖于久经考验的加速器,散裂靶和燃料阵列技术,并包含一个能够以动能0.6 GeV,脉冲长度2.86 ms和重复频率14 Hz输送约67.5 mA质子束的质子加速器。粒子束击中了常规设计的目标,该目标被易裂变/可育材料制成的倍增芯围绕,该芯由亚临界燃料电池阵列(由铝金属金属陶瓷制成)组成,该燃料电池被硼酸中毒的轻水冷却。选择相对低浓铀作为易裂变材料。使用与冷中子脉冲有关的几个特性作为目标函数的组成部分,对几个参数进行了优化。结果表明,对于某些进行中的项目,最佳装置将提供的冷中子通量高达80%,其质子束功率明显低于此类项目。在50天的周期后,核心内产生的总功率上升到22.8 MW,临界范围转换为最终keff值约0.9。 ©2014 Elsevier B.V.

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