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Radiation Damage and Tritium Breeding Study in a Fusion Reactor Using a Liquid Wall of Various Thorium Molten Salts

机译:多种Thor熔盐液壁在聚变反应堆中的辐射损伤和Tri的研究

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摘要

A new magnetic fusion reactor design, called APEX uses a liquid wall between fusion plasma and solid first wall to reach high neutron wall loads and eliminate the replacement of the first wall structure during the reactor's operation due to the radiation damage. In this paper, radiation damage behavior of the inboard and outboard first walls made of a ferritic steel, 9Cr-2WVTa, in the APEX blanket using various thorium molten salts, 75% LiF-25% ThF_4, 75% LiF-24% ThF_4-1% ~(233)UF_4 and 75% LiF-23% ThF_4-2% ~(233)UF_4 was investigated. Furthermore, tritium breeding potential of these salts in such a blanket was also examined. Computations were carried out using the code Scale 4.3 by solving Boltzmann neutron transport equation. Numerical results brought out that only the liquid wall containing the molten salt, 75% LiF-23% ThF_4-2% ~(233)UF_4 and having a thickness of ≥ 38 cm would be suitable to be used in the APEX reactor with respect to radiation damage criteria for the first wall structures and tritium self-sufficiency for the (DT) fusion driver.
机译:一种称为APEX的新型磁聚变反应堆设计,利用聚变等离子体与固体第一壁之间的液壁来达到高中子壁负荷,并消除了由于辐射损伤而在反应堆运行期间更换第一壁结构的情况。在本文中,使用各种molten熔盐,75%LiF-25%ThF_4、75%LiF-24%ThF_4-的AP铁皮在APEX毯中由9Cr-2WVTa铁素体钢制成的内侧和外侧第一壁的辐射损伤行为研究了1%〜(233)UF_4和75%LiF-23%ThF_4-2%〜(233)UF_4。此外,还检查了这些盐在此类毯子中的breed繁殖潜力。通过求解玻尔兹曼中子输运方程,使用代码Scale 4.3进行计算。数值结果表明,对于APEX反应器,仅包含熔融盐,75%LiF-23%ThF_4-2%〜(233)UF_4且厚度≥38 cm的液壁适合用于APEX反应器第一壁结构的辐射损伤标准和(DT)融合驱动器的tri自给性。

著录项

  • 来源
    《Journal of Fusion Energy》 |2007年第4期|p.317-321|共5页
  • 作者

    Mustafa Uebeyli;

  • 作者单位

    Engineering Faculty, Mechanical Engineering, TOBB Economics and Technology University, Soeguetoezue Cad. No:43, Soeguetoezue-Ankara 06560, Turkey;

  • 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

    radiation damage; tritium breeding; fusion; liquid wall;

    机译:辐射损伤;tri繁殖;融合;液壁;

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