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Considerations on neutron/environment characteristics in inertial fusion ignition (NIF) and reactor (KOYO) facilities

机译:考虑惯性聚变点火(NIF)和反应堆(KOYO)设施中的中子/环境特性

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摘要

This paper reviews reported calculations on the assessment of some environmental questions related to neutron activation in ignition (National Ignition Facility, NIF) and reactor (KOYO Project) inertial fusion facilities. NIF results on the availability of the target chamber after different gain shots, inventories of activated gases in the bay area, and comments on radiological impacts from normal operations have shown the good environmental qualifica- tions of this facility. The laser fusion conceptual reactor KOYO, developed by the ILE Osaka, uses liquid LiPb film protection flowing through ceramic SiC-base porous tubes in two different packing fraction blankets. It is shown the availability of a large fraction of the SiC with impurities to be considered as class C shallow land burial (SLB); however, the complete solution for SLB is the use of porous woven graphite (C) fabric tubes. An important effect in the activation of the chamber wall, composed by the ferritic steel HT-9, is demonstrated by using an intermediate graphite reflector. A good activation performance in the chamber is demonstrated allowing SLB and different recycling options. Hypothetical environmental releases of 1 kg of target-emissions-facing SiC tubes and HT-9 materials have also been simulated indicating optimum performances.
机译:本文回顾了有关评估点火中子活化(国家点火设施,NIF)和反应堆(KOYO项目)惯性聚变设施的一些环境问题的评估报告。 NIF结果显示了经过不同的增益射击后靶室的可用性,海湾区域中活性气体的清单以及对正常运行所产生的放射线影响的评论表明,该设施具有良好的环境质量。由大阪ILE公司开发的激光融合概念反应堆KOYO使用液态LiPb薄膜保护层,该保护层流过两个不同填充分数覆盖层中的陶瓷SiC基多孔管。结果表明,大部分的SiC和杂质均被视为C类浅埋土(SLB)。但是,SLB的完整解决方案是使用多孔编织石墨(C)织物管。通过使用中间石墨反射器,证明了由铁素体钢HT-9组成的室壁活化的重要作用。腔室中良好的激活性能被证明可以使用SLB和不同的回收选项。还模拟了1 kg面向目标发射的SiC管和HT-9材料的假想环境释放,表明其最佳性能。

著录项

  • 来源
    《Fusion Engineering and Design》 |1999年第1999期|353-358|共6页
  • 作者

    J.M. Perlado;

  • 作者单位
  • 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 原子能技术;
  • 关键词

  • 入库时间 2022-08-18 00:35:49

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