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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Optimization study on structural analyses for the J-PARC mercury target vessel
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Optimization study on structural analyses for the J-PARC mercury target vessel

机译:J-PARC汞靶容器结构分析的优化研究

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摘要

The spallation neutron source at the Japan Proton Accelerator Research Complex (J-PARC) mercury target vessel is used for various materials science studies, work is underway to achieve stable operation at 1 MW. This is very important for enhancing the structural integrity and durability of the target vessel, which is being developed for 1 MW operation. In the present study, to reduce thermal stress and relax stress concentrations more effectively in the existing target vessel in J-PARC, an optimization approach called the Taguchi method (TM) is applied to thermo-mechanical analysis. The ribs and their relative parameters, as well as the thickness of the mercury vessel and shrouds, were selected as important design parameters for this investigation. According to the analytical results of 18 model types designed using the TM, the optimal design was determined. It is characterized by discrete ribs and a thicker vessel wall than the current design. The maximum thermal stresses in the mercury vessel and the outer shroud were reduced by 14% and 15%, respectively. Furthermore, it was indicated that variations in rib width, left/right rib intervals, and shroud thickness could influence the maximum thermal stress performance. It is therefore concluded that the TM was useful for optimizing the structure of the target vessel and to reduce the thermal stress in a small number of calculation cases.
机译:日本质子加速器研究综合体(J-PARC)汞靶船上的散裂中子源用于各种材料科学研究,正在努力实现1 MW稳定运行。这对于提高目标容器的结构完整性和耐用性非常重要,该容器正在开发用于1 MW的运行。在本研究中,为了更有效地减小J-PARC中现有目标容器中的热应力并缓解应力集中,将一种称为Taguchi方法(TM)的优化方法应用于热机械分析。肋骨及其相关参数以及汞容器和护罩的厚度被选为该研究的重要设计参数。根据使用TM设计的18种模型类型的分析结果,确定了最佳设计。它的特点是肋骨不连续,容器壁比当前设计要厚。水银容器和外罩中的最大热应力分别降低了14%和15%。此外,表明肋宽度,左/右肋间隔和护罩厚度的变化会影响最大热应力性能。因此得出结论,在少数计算情况下,TM可用于优化目标容器的结构并减少热应力。

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