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Advances in the conceptual design of a gas-cooled Accelerator Driven System (ADS) transmutation device for a sustainable nuclear energy development

机译:用于可持续核能发展的气冷加速器驱动系统(ADS)转换装置的概念设计方面的进展

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摘要

The possibilities of a nuclear energy development are considerably increasing with the world energetic demand increment. However, the management of nuclear waste from conventional nuclear power plants and its inventory minimization are the most important issues that should be addressed. Fast reactors and Accelerator Driven Systems (ADS) are the main options to reduce the long-lived radioactive waste inventory. Pebble Bed Very High Temperature advanced systems have great perspectives to assume the future nuclear energy development challenges. The conceptual design of a Transmutation Advanced Device for Sustainable Energy Applications (TADSEA) has been done in preliminary studies. The TADSEA is an ADS cooled by helium and moderated by graphite that uses as fuel small amounts of transuranic elements in the form of TRISO particles, confined in 3 cm radius graphite pebbles forming a pebble bed configuration. It would be used for nuclear waste transmutation and energy production. In the paper, the results of a method for calculating the number of whole pebbles fitting in a volume according to its size are showed. From these results, the packing fraction influence on the TADSEAs main work parameters is studied. In addition, a redesign of the previous configuration, according to the established conditions in the preliminary design, i.e. the exit thermal power, is made. Additionally, the heterogeneity of the TRISO particles inside the pebbles is not negligible. In the paper, a study of the power density distribution inside the pebbles using a detailed model of the TRISO particles and a homogeneous composition of the fuel is addressed.
机译:随着世界能源需求的增加,发展核能的可能性也大大增加。然而,来自常规核电厂的核废料的管理及其库存的最小化是应解决的最重要问题。快速反应堆和加速器驱动系统(ADS)是减少长寿命放射性废物清单的主要选择。卵石床超高温先进系统具有很好的前景,可以应对未来的核能发展挑战。初步研究已经完成了可转化能源的可持续能源应用高级设备(TADSEA)的概念设计。 TADSEA是一种用氦气冷却并用石墨调节的ADS,它以TRISO颗粒的形式使用少量的超铀元素作为燃料,被限制在3 cm半径的石墨卵石中,形成卵石床结构。它将用于核废料的mut变和能源生产。在本文中,显示了根据大小计算适合整个体积的小石子数量的方法的结果。根据这些结果,研究了填充分数对TADSEAs主要工作参数的影响。另外,根据初步设计中建立的条件,即出口热功率,重新设计先前的配置。另外,卵石内部的TRISO颗粒的异质性不可忽略。在本文中,研究了使用TRISO颗粒和燃料的均匀成分的详细模型研究卵石内部的功率密度分布。

著录项

  • 来源
    《Progress in Nuclear Energy》 |2013年第11期|2-8|共7页
  • 作者单位

    Higher Institute of Technologies and Applied Sciences, Ave. Salvador Allende esq. Luaces, Habana City, Cuba;

    Higher Institute of Technologies and Applied Sciences, Ave. Salvador Allende esq. Luaces, Habana City, Cuba;

    Higher Institute of Technologies and Applied Sciences, Ave. Salvador Allende esq. Luaces, Habana City, Cuba;

    Higher Institute of Technologies and Applied Sciences, Ave. Salvador Allende esq. Luaces, Habana City, Cuba;

    Higher Institute of Technologies and Applied Sciences, Ave. Salvador Allende esq. Luaces, Habana City, Cuba;

    Energy Engineering Institute, Polytechnic University of Valencia, Valencia, Spain;

    Laboratory of Scientific Computing, State University of Santa Cruz, llheus, BA, Brazil;

    Modelling Group of Thermo-Energy Systems, Polytechnical University of Madrid, Madrid, Spain;

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

    Very High Temperature Reactor; Packing fraction; Nuclear fission; Accelerator Driven System;

    机译:超高温反应堆;包装分数核裂变;加速器驱动系统;
  • 入库时间 2022-08-18 00:43:25

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