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Some error studies for interface management in the HEBT of the IFMIF accelerator

机译:IFMIF加速器HEBT中用于接口管理的一些错误研究

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摘要

The IFMIF accelerator system is based on two similar beam lines running in parallel. Each D* beam of 40 MeV/125 mA is transported by a high energy beam transport (HEBT) line up to the liquid lithium target where neutrons will be produced. On the target, the specifications of the beam footprint mentioned a rectangular shape (20 cm × 5 cm) with a flat-topped homogeneous current density profile and small energy spread. The two beams footprints will overlap, doubling the current density on target and thus increase the neutron flux. As the specified beam conditions on lithium target are so stringent to achieve a stable neutron irradiation field, effects of errors due to misalignment and mis-accelerated condition at the entrance of HEBT are studied using multi particles simulation technique. The tolerance on beam axis off-set at HEBT inlet, without any orbit correction, is estimated around ±0.2 mm. Large energy deviations (larger than 2.5%) show small footprint robustness in case of mis-accelerated situation but better robustness for over-accelerated condition.
机译:IFMIF加速器系统基于两条平行运行的相似光束线。每条40 MeV / 125 mA的D *束通过高能束传输(HEBT)线传输到液态锂靶材,在其中产生中子。在目标上,电子束足迹的规格为矩形(20 cm×5 cm),具有平坦的均一电流密度分布和较小的能量散布。两束电子束的足迹将重叠,使目标上的电流密度增加一倍,从而增加中子通量。由于在锂靶上规定的束条件非常严格,无法获得稳定的中子辐照场,因此使用多粒子模拟技术研究了HEBT入口处由于未对准和加速条件不当而引起的误差影响。在不进行任何轨道校正的情况下,估计HEBT入口处光束轴偏移的公差约为±0.2 mm。较大的能量偏差(大于2.5%)在加速情况下显示出较小的足迹稳健性,但在加速过度的情况下具有更好的稳健性。

著录项

  • 来源
    《Fusion Engineering and Design》 |2011年第11期|p.2674-2677|共4页
  • 作者单位

    IFMIF/EVEDA Project Team. Obuchi-Omotedate, 2-166, Rokkasho. Aomori, 039-3212, Japan,Japan Atomic Energy Agency, 2-166 Obuchi-Omotedate, Rokkasho, Aomori. Japan;

    IFMIF/EVEDA Project Team. Obuchi-Omotedate, 2-166, Rokkasho. Aomori, 039-3212, Japan;

    IFMIF/EVEDA Project Team. Obuchi-Omotedate, 2-166, Rokkasho. Aomori, 039-3212, Japan;

    IFMIF/EVEDA Project Team. Obuchi-Omotedate, 2-166, Rokkasho. Aomori, 039-3212, Japan;

    IFMIF/EVEDA Project Team. Obuchi-Omotedate, 2-166, Rokkasho. Aomori, 039-3212, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    IFMIF; accelerator; beam robustness;

    机译:IFMIF;加速器;光束强度;

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