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Improvement of One-Dimensional Two-Fluid Momentum Conservation Equations for Vertically Stratified Flow

机译:垂直分层流一维两流体动量守恒方程的改进

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摘要

This paper deals with numerical challenges associated with simulating thermal-hydraulic phenomena in nuclear reactors with one-dimensional system analysis codes. The main focus of this research is directed toward assessment of the pressure gradient in vertically stratified flow, particularly the separate pressure drop effects for gas and liquid phases along the control cell. The pressure drop term in momentum conservation currently being developed based on the assumption of gas and liquid combined pressure drop was redefined such that two different pressures were imposed for gas and liquid separately. The verification of the proposed momentum equation for a vertically stratified flow was completed through simulations of the liquid velocity in a U-shaped manometer. Sensitivity analysis was also performed by increasing liquid mass in the pipe leading to different positions of the liquid-vapor interface from the bottom of each manometer pipe when the flow oscillation is stopped; i.e., the interfaces are not only cell boundaries but also various positions between cell edges. As a result, improved simulation results were obtained using the modified equations as it was indicated that the oscillation of fluid decays over time while the original solution for the large pipe does not converge to zero due to a mainly incorrect pressure drop term.
机译:本文用一维系统分析代码处理与模拟核反应堆热工现象有关的数值挑战。这项研究的主要重点是评估垂直分层流中的压力梯度,尤其是沿控制单元的气相和液相的单独压降效应。当前基于气体和液体组合压降的假设而开发的动量守恒中的压降术语已被重新定义,以便分别对气体和液体施加两个不同的压力。通过模拟U型压力计中的液体速度,完成了对垂直分层流所提出的动量方程的验证。还通过增加管道中的液体质量来进行灵敏度分析,当流动振荡停止时,管道中的液体质量会从每个压力表管道的底部到液-气界面的不同位置。即,界面不仅是单元边界,而且是单元边缘之间的各种位置。结果,使用修改后的方程式获得了改进的仿真结果,因为表明流体的振荡会随着时间的流逝而衰减,而大型管道的原始解由于主要是不正确的压降项而不会收敛到零。

著录项

  • 来源
    《Nuclear Technology》 |2018年第2期|162-171|共10页
  • 作者单位
  • 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

  • 入库时间 2022-08-18 04:06:30

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