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Core thermal hydraulic CFD support for liquid metal reactors

机译:用于液态金属反应器的核心热液压CFD支撑

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摘要

Knowledge of the heat transport in the core is important for design and safety assessment of all nuclear reactors including liquid metal cooled reactors. In the past, design and safety calculations with respect heat transport in the core for such liquid metal cooled reactors were largely one-dimensional and based on experimental data. Nowadays, with modern state-of-the-art computer power and tools, three-dimensional Computational Fluid Dynamics (CFD) simulations allow designers and safety specialists to obtain much more detailed information on the heat transport in liquid metal cooled fuel assemblies, obviously supported by necessary experimental campaigns. This may lead to new insights possibly decreasing the safety margins.To this respect, an overview will be provided on the necessary activities in the frame of design and safety support using CFD for liquid metal reactors accompanied and illustrated by examples from NRG in the Netherlands. These examples include validation efforts for fuel assemblies as they are designed on the drawing board for 'cold' conditions. However, in reality, even under normal operational condition, a fuel assembly may deform. Therefore, an assessment of the effect of deformations resulting from operational conditions is necessary and will be shown. Another aspect possibly occurring during operational conditions is vibration. State-of-the-art coupled CFD and finite element method fluid structure interaction techniques have been developed and applied to a wire wrapped fuel assembly, providing insights in the vibration behavior of such assemblies. However, design and safety analysts will not only have to cope with operational conditions, but also have to show the heat transport behavior under accident conditions. For this, an assessment of the effect of internal and inlet blockages will be presented.
机译:对核心的热传输知识对于所有核反应堆的设计和安全评估是重要的,包括液态金属冷却反应器。在过去,在这种液态金属冷却反应器的核心中具有尊重热传输的设计和安全计算主要是一维和基于实验数据。如今,具有现代最先进的计算机电源和工具,三维计算流体动力学(CFD)模拟允许设计师和安全专家在液态金属冷却燃料组件中获得更多详细信息,显然支持通过必要的实验活动。这可能导致可能会降低安全利润的新见解。在这方面,将在使用CFD用于携带液态金属反应器的CFD中的设计和安全支持框架中的必要活动中提供概览,并通过NRG在荷兰中的例子。这些例子包括燃料组件的验证工作,因为它们在绘图板上设计为“冷”条件。然而,实际上,即使在正常运行状态下,燃料组件也可能变形。因此,需要评估由操作条件产生的变形效果是必需的,并且将显示。在操作条件下可能发生的另一个方面是振动。最先进的耦合CFD和有限元方法流体结构相互作用技术已经开发并施加到卷绕燃料组件上,提供这种组件的振动行为的见解。然而,设计和安全分析师不仅必须应对操作条件,而且还必须在事故条件下显示热传输行为。为此,将呈现对内部和入口堵塞效果的评估。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2019年第12期|110322.1-110322.10|共10页
  • 作者单位

    NRG Westerduinweg 3 NL-1755 LE Petten Netherlands;

    NRG Westerduinweg 3 NL-1755 LE Petten Netherlands;

    NRG Westerduinweg 3 NL-1755 LE Petten Netherlands;

    NRG Westerduinweg 3 NL-1755 LE Petten Netherlands;

    NRG Westerduinweg 3 NL-1755 LE Petten Netherlands;

    NRG Westerduinweg 3 NL-1755 LE Petten Netherlands;

    NRG Westerduinweg 3 NL-1755 LE Petten Netherlands;

  • 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

    CFD; Fuel assembly; Single-phase; Wire-wraps;

    机译:CFD;燃料组件;单相;丝网;

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