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Final design, fluid dynamic and structural mechanical analysis of a liquid hydrogen Moderator for the European Spallation Source

机译:欧洲椎间露源剂液体氢气调温器的最终设计,流体动力学和结构力学分析

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The European Spallation Source (ESS) is currently in the construction phase and should have first beam on Target in 2019. ESS, located in Sweden, will be the most powerful spallation neutron source worldwide, with the goal to produce neutrons for research. As an in-kind partner the Forschungszentrum Juelich will among others, design and manufacture the four liquid hydrogen Moderators, which are located above and below the Target. Those vessels are confining the cold hydrogen used to reduce the energy level of the fast neutrons, produced by spallation in the Target, in order to make the neutrons usable for neutron scattering instruments. Due to the requirements [1], a fluid dynamic analysis with pressure and temperature depended hydrogen data, taking into account the pseudo critical phenomena and the pulsed neutronic heating (pressure waves) is necessary. With the fluid dynamic results, a structure mechanical analysis including radiation damage investigation (RCC-MRx code [5]), low temperature properties as well as strength reduction by welding can be realized. Finally, the manufacturing and welding completes the design process.
机译:欧洲散裂中子源(ESS)目前正处于建设阶段,应该有目标第一梁2019 ESS,位于瑞典,将是最强大的散裂中子源遍及世界各地,目标,以产生中子进行研究。作为实物伙伴于利希研究中心将在其他中,设计并制造的四个液体氢版主,分别位于上方和下方的目标。这些容器是限制用于减少快中子,通过散裂在目标产生的能量水平,以使中子可用于中子散射仪器的冷氢。由于要求[1],其中的压力和温度取决于氢数据的流体动力学分析,考虑到伪临界现象和脉冲中子加热(压力波)是必要的。与流体动态结果,结构力学分析包括辐射损伤调查(RCC-MRx会代码[5]),低温性能以及通过焊接能够实现降低强度。最后,制造及焊接完成设计过程。

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