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A study using RELAP5 on capability and instability of two-phase natural circulation flow under passive external reactor vessel cooling

机译:使用RELAP5研究被动外部反应堆容器冷却下两相自然循环流的能力和不稳定性

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摘要

External reactor vessel cooling (ERVC) in the gap clearance between the reactor vessel wall and insulation material is an important management strategy for in-vessel retention (IVR). Because the process of two-phase natural circulation flow under ERVC condition owns a low pressure and high power boundaries in cavity flooding balance condition, the flow instability is considered as one of the important factors determining heat removal capacity of ERVC. A great number of experiments are performed to investigate the effect of configurable and thermal-hydraulic parameters of ERVC system on the flow in the gap, especially the latest Chinese full-scaled and full-height REPRC heating experiment. To complement the experiment effort, a simulation study utilizing RELAP5 program is performed to investigate the two-phase natural circulation flow capability and instability for various sets of initial condition such as pressures, subcoolings, flooding levels and heat powers. The partial results are compared with the corresponding REPRC experiment data from available articles. And empirical formulae and numerical calculation are used to investigate into and compare with the critical subcoolings and density wave instability obtained from RELAP5 calculation. Besides, instability boundaries under various pressures are found. The results show that the effect of the thermal-hydraulic parameters for the optimized ERVC system configuration on two-phase natural circulation flow is still great during the early stage after hypothetical accidents. The steady two-phase natural circulation flow cannot be established and intensive flow rate oscillation and back flow occur as the flooding water subcooling is below the critical value.
机译:反应堆容器壁和隔热材料之间的间隙中的外部反应堆容器冷却(ERVC)是容器内滞留(IVR)的重要管理策略。由于ERVC条件下的两相自然循环流动过程在腔驱平衡条件下具有低压和高功率边界,因此流动的不稳定性被认为是决定ERVC排热能力的重要因素之一。进行了大量实验以研究ERVC系统的可配置参数和热工液压参数对间隙中流动的影响,特别是中国最新的全尺寸和全高度REPRC加热实验。为了补充实验工作,利用RELAP5程序进行了模拟研究,以研究两阶段自然循环流量和各种初始条件(如压力,过冷度,水位和热力)的不稳定性。将部分结果与来自可用文章的相应REPRC实验数据进行比较。并采用经验公式和数值计算方法,对RELAP5计算得出的临界过冷度和密度波不稳定性进行了研究和比较。此外,发现了在各种压力下的不稳定性边界。结果表明,假设事故发生后的早期阶段,热工水力参数对优化的ERVC系统配置对两相自然循环流量的影响仍然很大。当洪水过冷度低于临界值时,就无法建立稳定的两相自然循环流量,并且会出现剧烈的流量振荡和回流。

著录项

  • 来源
    《Annals of nuclear energy》 |2013年第10期|115-126|共12页
  • 作者单位

    National Defense Key Subject Laboratory of Nuclear Safety and Simulation Technology, Harbin Engineering University, Harbin 150001, China;

    National Defense Key Subject Laboratory of Nuclear Safety and Simulation Technology, Harbin Engineering University, Harbin 150001, China;

    National Defense Key Subject Laboratory of Nuclear Safety and Simulation Technology, Harbin Engineering University, Harbin 150001, China;

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

    ERVC; Two-phase natural circulation capability; Flow instability; RELAP5;

    机译:ERVC;两相自然循环能力;流量不稳定;RELAP5;
  • 入库时间 2022-08-18 00:51:09

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