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Study of density wave instability in natural circulation with parallel channels under inclined and heaving conditions

机译:倾斜和起伏条件下平行通道自然环流密度波不稳定性研究

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摘要

Nuclear reactors used in warships, commercial ships and floating nuclear power plants will move synchronously with the carrier due to the action of waves or surges. Under ocean conditions, flow oscillations due to additional external motions can be superimposed with flow instabilities in the system resulting in larger amplitude oscillations or even resonances. Sustained compound oscillation will lead to fatigue failure of components, deteriorate local heat transfer, and affect the safe operation of the reactor system. The PNCMC (Program for Natural Circulation under Motion Condition) program is utilized in this research to explore the density wave instability (Type-Ⅰ) in parallel channels during ocean circulation, and stability boundaries under different thermal-hydraulic parameters as well as ocean conditions to support the safe operation of the system. Through our study, it is found that under the condition of small heating channel inlet resistance coefficient, the unstable boundary powers in vertical case of natural circulation according to the order from small to large are the initial boundary of the parallel three-channels out-of-phase oscillation, the initial boundary of system's density wave oscillation, the boundary of the terminated system oscillation of density wave, as well as boundaries of three parallel channels where out-of-phase oscillations terminate, respectively; The inclined condition's stable boundary is generally lower than that in the vertical case. Unstable boundary power for the natural circulation in the heaving situation according to the order from small to large are the initial boundary of density wave oscillation in whole system are the initial boundary of oscillation of the density wave in system, the initial boundary of the parallel three-channels out-of-phase oscillation, boundary for three parallel-channels where out-of-phase oscillations terminate, and the boundary of the terminated system density wave oscillation, respectively; The oscillations caused by heaving motions, the system oscillations of density wave, as well as oscillations out of phase between the channels were overlapped to cause flow oscillations of very complex compound inside the heating parallel channels. At the same time, the increase of the resistant coefficient at inlet of heating channels can significantly suppress out-of-phase oscillation between the channels.
机译:军舰、商船和浮动核电站使用的核反应堆会因波浪或浪涌的作用而与载体同步移动。在海洋条件下,由于额外的外部运动引起的流动振荡可能与系统中的流动不稳定性叠加在一起,导致更大的振幅振荡甚至共振。持续的复合振荡会导致部件疲劳失效,局部传热恶化,影响反应器系统的安全运行。本研究利用PNCMC(Program for Natural Circulation under Motion Conditions)程序,探索海洋环流过程中平行通道的密度波不稳定性(Type-I.),以及不同热力-水力参数和海洋条件下的稳定性边界,以支持系统的安全运行。通过研究发现,在加热通道入口阻力系数较小的条件下,自然环流垂直情况下的不稳定边界幂按从小到大的顺序依次为平行三通道异相振荡的初始边界、系统密度波振荡的初始边界、密度波终止系统振荡的边界、 以及三个平行通道的边界,其中异相振荡分别终止;倾斜条件的稳定边界通常低于垂直情况下的稳定边界。不稳定边界功率为自然环流在起伏情况下的从小到大依次为整个系统中密度波振荡的初始边界,是系统中密度波振荡的初始边界,平行三通道异相振荡的初始边界,异相振荡终止的三个平行通道的边界, 和端接系统密度波振荡的边界;由起伏运动引起的振荡、密度波的系统振荡以及通道之间的异相振荡重叠,导致加热平行通道内非常复杂的化合物的流动振荡。同时,加热通道入口处电阻系数的增加可以显著抑制通道之间的异相振荡。

著录项

  • 来源
    《Progress in nuclear engergy》 |2023年第1期|104525.1-104525.12|共12页
  • 作者单位

    Institute of Nuclear and New Energy Technology, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Key Laboratory of Advanced Reactor Engineering and Safety, Ministry of Education, Tsinghua University, Beijing, 100084, China;

    Nuclear Power Institute of China, Chengdu, China;

    Nuclear Power Institute of China, Chengdu, China,Institute of Nuclear and New Energy Technology, Collaborative Innovation Center of Advanced Nuclear Energy Technology, Key Laboratory of Advanced Reactor Engineering and Safety, Ministry of Education, Tsing;

  • 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 英语
  • 中图分类
  • 关键词

    Nuclear reactor; Natural circulation; Ocean conditions; Parallel heating channels; Density wave instability;

    机译:核反应堆;自然循环;海洋条件;平行加热通道;密度波不稳定性;
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