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首页> 外文期刊>Annals of nuclear energy >Potential use of molten salts bearing plutonium fluorides in a magnetic fusion energy reactor
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Potential use of molten salts bearing plutonium fluorides in a magnetic fusion energy reactor

机译:在磁聚能反应堆中潜在使用带有氟化p的熔融盐

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摘要

This study presents the influence of addition of plutonium fluorides with different grades and compositions to Li_2BeF_4 (Flibe) on the neutronic performance of a magnetic fusion reactor called APEX that uses a liquid wall between the plasma and the first wall. Computations were carried out with respect to the liquid wall thickness with the help of the code Scale4.3 by solving the Boltzmann neutron transport equation. Numerical results brought out that a liquid wall of 37 cm in thickness would be required to make the first wall a lifetime structure with sufficient tritium production for the coolants using Flibe with either 0.5% or 1% of weapon grade PuF_4, and a thickness of 34 cm would be required using Flibe with either 0.5% or 1% of spent fuel grade PuF_4. In addition, these coolants improved the neutronic performance of the reactor by amplifying the fusion power remarkably. Moreover, the plutonium content (0.5% or 1%) in the investigated salts had no effect on the required blanket thickness since the helium generation was obtained as the life-limiting factor that was not affected by the plutonium content practically.
机译:这项研究提出了向Li_2BeF_4(Flibe)中添加不同等级和成分的氟化p对称为APEX的磁聚变反应堆中子性能的影响,该反应堆在等离子体和第一壁之间使用液壁。通过求解玻尔兹曼中子输运方程,在代码Scale4.3的帮助下对液体壁厚进行了计算。数值结果表明,使用Flibe(武器等级为PuF_4的0.5%或1%)时,需要使用厚度为37 cm的液体壁来使第一壁成为具有足够tri生成量的终生结构,以使冷却剂产生足够的tri。如果使用Flibe,且乏燃料等级为PuF_4的0.5%或1%,则要求厘米。另外,这些冷却剂通过显着增大聚变功率来改善反应堆的中子性能。此外,所研究的盐中的content含量(0.5%或1%)对要求的覆盖层厚度没有影响,因为获得的氦气生成实际上不受by含量的影响,是其寿命限制因素。

著录项

  • 来源
    《Annals of nuclear energy》 |2008年第6期|p.1087-1092|共6页
  • 作者

    Mustafa UEbeyli;

  • 作者单位

    TOBB Ekonomi ve Teknoloji, UEniversitesi Makine Muehendisligi, Soeguetoezue Caddesi No. 43, 06560 Ankara, Turkey;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子能技术;
  • 关键词

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