首页> 外文期刊>Nuclear Technology >Passive Reactivity Control Device with Thermal Expansion of Liquid In-Gd Alloy
【24h】

Passive Reactivity Control Device with Thermal Expansion of Liquid In-Gd Alloy

机译:具有热膨胀的无源反应性控制装置,液体中的热膨胀合金

获取原文
获取原文并翻译 | 示例
           

摘要

The small modular reactor (SMR) is considered one of the important energy sources for the realization of the de-carbonated society, especially SMR types that have 10 MW or less thermal power, called a microreactor or very small modular reactor (vSMR). Toshiba Energy Systems & Solutions has initiated the development of a multipurpose vSMR as a distributed energy source since 2017 called MoveluX™ (Mobile-Very-small reactor for Local Utility in X-mark). In the current core design, a passive reactivity control device is required from the viewpoint of passive nuclear safety and operational cost reduction. The fundamental idea of vSMR passive reactivity control devices is based on the lithium expansion module (LEM) proposed by Kambe, et al. ["Startup Sequence of RAPID-L Fast Reactor for Lunar Base Power System," Proc. Space Nuclear Conference, (2007)], however, the LEM has some issues regarding the lithium neutron absorber, such as production costs, chemical reactivity, and tritium generation. In the present study, the In-Gd alloy is proposed as an alternative to ~6Li. The In-Gd alloy is chemically stable in the air atmosphere; additionally, indium and gadolinium have enough neutron absorption cross section without isotope enrichment. However, the density, thermal expansion, and exothermal heat characteristics are not available, which is important information from the viewpoint of neutronics and safety. Hence, the material properties in the In-Gd alloy were measured, such as temperature-dependent density and chemical reactivity. Furthermore, control rod reactivity worth was evaluated based on the measured density. As a result, the 1 wt% gadolinium contained in the In-Gd alloy shows control rod reactivity worth that is 2.5 times greater than natural lithium. Furthermore, the uncertainty of the In-Gd alloy density has a small impact on the reactivity worth; only in the range of 78 pcm (equivalent to 1% of insertion position) in the case of the 0.1 g/cm~3 perturbation of the In-Gd alloy density. In conclusion, the present study shows the advantage and feasibility of the In-Gd alloy as a liquid neutron absorber for the Indium-Gadolinium Expansion Module.
机译:小模块化反应器(SMR)被认为是实现脱碳社会的重要能源之一,特别是具有10mW或更小的热功率,称为微反应器或非常小的模块化反应器(VSMR)的SMR类型。东芝能量系统和解决方案已启动自2017年以来作为分布式能源的开发,称为Movelux™(移动 - 在X-Mark中的本地实用程序)。在目前的核心设计中,从无源核安全性和运营成本降低的观点来看,需要无源反应性控制装置。 VSMR无源反应性控制装置的基本思想基于Kambe等人提出的锂膨胀模块(LEM)。 [“月球基础电力系统的Rapid-L快速反应堆启动序列”,Proc。然而,空间核会议(2007)]但是,LEM对锂中子吸收器有一些问题,例如生产成本,化学反应性和氚生成。在本研究中,提出了GD合金作为〜6LI的替代方案。 GD合金在空气气氛中在化学稳定;另外,铟和钆具有足够的中子吸收横截面,没有同位素富集。然而,密度,热膨胀和放热热特性不可用,这是从中型和安全性的观点来看的重要信息。因此,测量了GD合金中的材料特性,例如温度依赖性密度和化学反应性。此外,基于测量的密度评估控制杆反应性值。结果,GD合金中包含的1wt%钆表示价值的控制杆反应性比天然锂的2.5倍。此外,GD合金密度的不确定性对价值的反应性小幅影响;在0.1g / cm〜3扰动的基于GD合金密度的情况下,仅在78pcm(相当于插入位置的1%)的范围内。总之,本研究表明,GD合金作为铟 - 钆膨胀模块的液中子吸收器的优点和可行性。

著录项

  • 来源
    《Nuclear Technology》 |2021年第11期|1784-1792|共9页
  • 作者单位

    Toshiba Energy Systems and Solutions 4-1 Ukishima-cho Kawasaki-ku Kawasaki Japan;

    Toshiba Energy Systems and Solutions 4-1 Ukishima-cho Kawasaki-ku Kawasaki Japan;

    Toshiba Energy Systems and Solutions 4-1 Ukishima-cho Kawasaki-ku Kawasaki Japan;

    Toshiba Energy Systems and Solutions 8 Shinsugita-cho Isogo-ku Yokohama 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

    Small modular reactor; reactivity control; gadolinium; liquid metal;

    机译:小模块化反应器;反应性控制;钆;液态金属;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号