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Autonomous Control Strategies for Very High Temperature Reactor Based Systems for Hydrogen Production

机译:基于超高温反应器的制氢系统的自主控制策略

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摘要

This paper is focused on feasible autonomous control strategies for Generation TV very high temperature reactors (VHTRs)-based systems for hydrogen production. Various burnable poison distributions and fuel compositions are considered. In particular, utilization of transuranium nuclides (TRUs) in VHTRs is explored as the core self-stabilization approach. Both direct cycle and indirect cycle energy conversion approaches are discussed. It is assumed that small-scale VHTRs may be considered for international deployment as grid-appropriate variable-scale self-contained systems addressing emerging demands for hydrogen. A Monte Carlo-deterministic analysis methodology has been implemented for coupled design studies of VHTRs with TRUs using the ORNL scale 5.1 code system. The developed modeling approach provides an exact-geometry 3D representation of the VHTR core details properly capturing VHTR physics. The discussed studies are being performed within the scope of the U.S. DOE Nuclear Energy Research Initiative project on utilization of higher actinides (TRUs and partitioned minor actinides) as a fuel component for extended-life VHTR configurations.
机译:本文的重点是基于电视的甚高温反应堆(VHTRs)制氢系统的可行的自主控制策略。考虑了各种可燃毒物分布和燃料成分。尤其是,将VHTR中的铀核素(TRU)的利用作为核心的自我稳定方法进行了探索。讨论了直接循环和间接循环能量转换方法。假定可以考虑将小规模的VHTR作为国际化部署,以解决电网对氢气的新需求,而这是适用于电网的可变规模的独立系统。已使用ORNL规模5.1代码系统对VHTR和TRU的耦合设计研究实施了蒙特卡洛确定性分析方法。开发的建模方法提供了VHTR核心细节的精确几何3D表示,可以正确捕获VHTR物理特性。讨论的研究正在美国能源部核能研究计划项目的范围内进行,该项目涉及利用高级act系元素(TRU和分配的次要act系元素)作为延长寿命的VHTR配置的燃料成分。

著录项

  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2009年第5期|052906.1-052906.6|共6页
  • 作者单位

    Department of Nuclear Engineering, Texas ASM University, 129 Zachry Engineering Center, MS 3133 TAMU, College Station, TX 77843-3133;

    Department of Nuclear Engineering, Texas ASM University, 129 Zachry Engineering Center, MS 3133 TAMU, College Station, TX 77843-3133;

    Department of Nuclear Engineering, Texas ASM University, 129 Zachry Engineering Center, MS 3133 TAMU, College Station, TX 77843-3133;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    RGPu: Reactor-grade plutonium;

    机译:RGPu:反应堆级p;

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