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Review on Thermal-Hydraulic Characteristics of Nuclear Reactors Under Ocean Conditions

机译:海洋条件下核反应堆的热工水力特性研究进展

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摘要

The thermal-hydraulic characteristics of nuclear reactors under ocean conditions are significant for reactor safety and reliability. A large number of experiments concerning this issue have been done. However, the focus of these experiments has been mainly on dynamical systems in submarines and aircraft carriers. With the development of floating nuclear power plants (FNPPs)—which are used to provide power for remote areas or ocean platforms—more studies on FNPPs are needed. The differences between FNPPs and dynamical systems bring new challenges to research of thermal-hydraulic characteristics in a nuclear reactor under ocean conditions.Many experimental studies on natural circulation and forced circulation under ocean conditions are based on tube and rectangular channels. The effects of ocean motions on friction, flow instability, heat transfer, and critical heat flux (CHF) have been investigated. The intensity of ocean motions and their driving head have a huge impact on pressure drop, heat transfer, and flow instability, especially when the driving head is small. Flow oscillations induced by ocean motions can overlap with thermal-induced flow instability. This resonance effect can cause potential harm to systems. CHF under ocean conditions is mainly dependent on motion types and the CHF mechanism.There are challenges with this research. First, conclusions obtained from a simple channel cannot always extend to rod bundle systems. Second, studies of ocean conditions, which always use one- or two-dimensional movements, are relatively simple and cannot reflect complicated ocean environments. Third, there is a lack of comparison between natural frequency of two-phase flow instability and frequency of ocean waves, and this may cause unwanted problems due to resonance or coupling behaviors. Fourth, CHF experiments that are performed to examine CHF events under ocean conditions are far from real reactor conditions where CHF events occur under high-temperature and high-pressure conditions, with complicated three-dimensional geometry, with open channel environments, and sometimes even under the influence of mixing vane grids [for most small modular reactor designs]. Last, there has been no work on the length effect, nonuniform heating, and mixing effect induced by spacer grids, which differentiate FNPP thermal-hydraulic characteristics from the other applications. A series of suggestions are provided for future work.
机译:海洋条件下核反应堆的热工水力特性对于反应堆的安全性和可靠性至关重要。关于此问题的大量实验已经完成。但是,这些实验的重点主要集中在潜艇和航空母舰上的动力系统上。随着用于向偏远地区或海洋平台提供电力的浮动核电站(FNPP)的发展,需要对FNPP进行更多的研究。 FNPPs与动力系统之间的差异给海洋条件下的核反应堆热工水力特性研究带来了新的挑战。许多关于海洋条件下自然循环和强迫循环的实验研究都是基于管形和矩形通道。研究了海洋运动对摩擦,流动不稳定性,热传递和临界热通量(CHF)的影响。海洋运动的强度及其驱动头对压降,传热和流量不稳定有很大影响,尤其是在驱动头较小的情况下。海洋运动引起的水流振荡可能与热引起的水流不稳定性重叠。这种共振效应可能会对系统造成潜在伤害。海洋条件下的CHF主要取决于运动类型和CHF机制,这项研究面临挑战。首先,从简单渠道获得的结论并不总是能推广到棒束系统。其次,始终使用一维或二维运动的海洋条件研究相对简单,无法反映复杂的海洋环境。第三,在两相流不稳定性的固有频率和海浪频率之间缺乏比较,这可能会由于共振或耦合行为而引起不必要的问题。第四,为检查海洋条件下的CHF事件而进行的CHF实验与实际的反应堆条件相去甚远,在实际的反应堆条件下,CHF事件在高温和高压条件下发生,具有复杂的三维几何结构,明渠环境,有时甚至在混合叶片栅的影响[对于大多数小型模块化反应堆设计而言]。最后,关于隔离栅引起的长度效应,不均匀加热和混合效应的工作还没有进行,这使FNPP热工液压特性不同于其他应用。为以后的工作提供了一系列建议。

著录项

  • 来源
    《Nuclear science and engineering》 |2019年第2期|14-32|共19页
  • 作者单位

    Xi’an Jiaotong University, School of Nuclear Science and Technology, Science and Technology Center for Advanced Fuel Research & Development;

    Xi’an Jiaotong University, School of Nuclear Science and Technology, Science and Technology Center for Advanced Fuel Research & Development;

    Xi’an Jiaotong University, School of Nuclear Science and Technology, Science and Technology Center for Advanced Fuel Research & Development;

    Xi’an Jiaotong University, School of Nuclear Science and Technology, Science and Technology Center for Advanced Fuel Research & Development;

  • 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

    Thermal-hydraulic characteristics; floating nuclear power plant; review; ocean conditions;

    机译:热工水力特性;浮式核电站;审查;海洋条件;

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