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DESIGN STUDIES FOR ESS-BILBAO NEUTRONIC APPLICATIONS LABORATORY

机译:ESS-Bilbao中子应用实验室设计研究

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The ESS-BILBAO Accelerator Center site at the Lejoa UPV/EHU campus, will be provided with a proton accelerator up to 300-400 MeV. In the first construction phase, a beam extraction will be set at the end of the DTL, which will produce a 50 MeV proton beam with an average intensity of 2.25 mA and 1.5 ms pulses at a frequency of 20 Hz. These beam characteristics allow to configure a low intensity neutron source based in the Be (p, n) reaction, which enables experimentation with cold neutrons similar to that of LENS. The total beam power will be 112 kW, so the configuration of the neutron production target will be based on a rotating disk of beryllium slabs perpendicularly facing the beam on one side and a cryogenic methane moderator on the other, with the target-moderator system surrounded by a beryllium reflector. In this paper, first estimates will be presented for thermomechanical conditions of the target cooling scheme, neutron source intensities, cold neutron pulses, operating dose rates, generated activity and tritium production.
机译:该ESS-BILBAO加速器中心的网站在Lejoa UPV /鹅湖的校园,将提供一个质子加速器高达300-400兆电子伏。在第一施工阶段,将在DTL的末端设定光束提取,这将产生50meV质子束,其平均强度为2.25mA和1.5ms脉冲的频率为20Hz。这些光束特性允许配置基于在成为(P,N)反应,使实验用冷中子类似于透镜的低强度的中子源。总束功率将是112千瓦,所以中子产生目标的配置将基于垂直相对一侧上的光束和在另一低温甲烷主持人铍板坯的旋转盘上,以包围所述目标 - 缓和剂系统由铍反射器。在本文中,第一估计将被呈现为目标冷却方案的热条件下,中子源强度,中子冷脉冲,操作剂量率,产生的活性和氚的生产。

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