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2004 Fiscal Year Final Research Report Summary

Numerical Analysis of Dryout Phenomena in Light Water-Cooled Nuclear Reactors using Particle Method

Research Project

Project/Area Number 14380232
Research Category

Grant-in-Aid for Scientific Research (B)

Allocation TypeSingle-year Grants
Section一般
Research Field Nuclear engineering
Research InstitutionThe University of Tokyo

Principal Investigator

OKA Yoshiaki  The University of Tokyo, School of Engineering, Professor, 大学院・工学系研究科, 教授 (40011225)

Co-Investigator(Kenkyū-buntansha) KOSHIZUKA Seiichi  The University of Tokyo, School of Engineering, Professor, 大学院・工学系研究科, 教授 (80186668)
ISHIWATARI Yuki  The University of Tokyo, School of Engineering, Research Associate, 大学院・工学系研究科, 助手 (10334319)
Project Period (FY) 2002 – 2004
KeywordsNuclear Reactor / Thermal-hydraulics / Gas-Liquid Two-Phase Flow / Numerical Analysis / Particle Method / Dryout / Boiling Transition / Droplet
Research Abstract

In Boiling Water Reactors (BWRs), annular mist flow appears in the upper part of the core. Dryout is a limiting condition of thermalhydraulic design. It is important to analyze dry out accurately for the reactor design and safety. Moving Particle Semi-implicit (MPS) method has been developed by the present researchers. The MPS method does not need meshes, so that droplet separation and merging are easily analyzed. In the present study, direct simulation of dry out was carried out using the MPS method.
Dryout phenomenon consists of the deposition process where droplets are absorbed by the liquid film flowing on the fuel reds, and the entrainment process where droples are released from the liquid film. First, single droplet behavior in the deposition process was analyzed by the MPS method. When the droplet diameter is small or the impact velocity is slow, the droplet is totally absorbed by the liquid film. When the droplet diameter is large or the impact velocity is high, the droplet impact disturbs the liquid film and new droplets are generated. This new droplets (re-entrainment) cannot be neglected in the Boiling Water Reactor (BWR) conditions.
A particle-mesh hybrid method was developed based on the finite volume method and the particle method (MPS method). Gas-liquid two-phase flow can be analyzed efficiently using the hybrid method. A low-Reynolds number k-ε model was incorporated into this hybrid method. Simulation of liquid film flow and instability on the fuel rods in BWR cores using the hybrid method.
In this study, numerical methods have been developed to analyze the basic processes in the dryout phenomenon m the BWR conditions. Anew knowledge about the re-entrainment process was also obtained.

  • Research Products

    (12 results)

All 2005 2004 2003

All Journal Article (10 results) Book (2 results)

  • [Journal Article] A Hybrid Particle-Mesh Method for Viscous, Incompressible, Multiphase Flows2005

    • Author(s)
      J.Liu, S.Koshizuka, Y.Oka
    • Journal Title

      J.Comput.Phys. 202

      Pages: 65-93

    • Description
      「研究成果報告書概要(和文)」より
  • [Journal Article] Numerical Simulation of Liquid Drop Deposition in Annular-Mist Flow Regime of Boiling Water Reactor2004

    • Author(s)
      H.Xie, S.Koshizuka, Y.Oka
    • Journal Title

      J.Nucl.Sci.Technol. 41

      Pages: 569-578

    • Description
      「研究成果報告書概要(和文)」より
  • [Journal Article] Modelling of a Single Drop Impact onto Liquid Film Using Particle Method2004

    • Author(s)
      H.Xie, S.Koshizuka, Y.Oka
    • Journal Title

      Int.J.Num. Methods Fluids 45

      Pages: 1009-1023

    • Description
      「研究成果報告書概要(和文)」より
  • [Journal Article] Effect of Splash on the Deposition and Re-entrainment in Annular Mist Flow2004

    • Author(s)
      H.Xie, S.Koshizuka, Y.Oka, T.Yamauchi
    • Journal Title

      Proc 6th Int.Conf. Nuclear Thermal Hydraulics, Operations and Safety (NUTHOS-6)

      Pages: N6P195

    • Description
      「研究成果報告書概要(和文)」より
  • [Journal Article] Development and Validation of a Particle-mesh Method for Incompressible Multiphase Flows2004

    • Author(s)
      J.Liu, S.Koshizuka, Y.Oka
    • Journal Title

      Proc 6th Int.Conf. Nuclear Thermal Hydraulics, Operations and Safety (NUTHOS-6)

      Pages: N6P190

    • Description
      「研究成果報告書概要(和文)」より
  • [Journal Article] Modelling of a Single Drop Impact onto Liquid Film Using Particle Method2004

    • Author(s)
      H.Xie, S.Koshizuka, Y.Oka
    • Journal Title

      Int.J.Num.Methods Fluids 45

      Pages: 1009-1023

    • Description
      「研究成果報告書概要(欧文)」より
  • [Journal Article] Effect of Splash on the Deposition and Re-entrainment in Annular Mist Flow2004

    • Author(s)
      H.Xie, S.Koshizuka, Y.Oka, T.Yamauchi
    • Journal Title

      Proc 6th Int.Conf.Nuclear Thermal Hydraulics, Operations and Safety (NUTHOS-6) N6P195

    • Description
      「研究成果報告書概要(欧文)」より
  • [Journal Article] Development and Validation of a Particle-mesh Method for Incompressible Multiphase Flows2004

    • Author(s)
      J.Liu, S.Koshizuka, Y.Oka
    • Journal Title

      Proc 6th Int.Conf.Nuclear Thermal Hydraulics, Operations and Safety (NUTHOS-6) N6P190

    • Description
      「研究成果報告書概要(欧文)」より
  • [Journal Article] Numerical Simulation of a Single Drop Impact on Liquid Surface using Particle Method2003

    • Author(s)
      H.Xie, S.Koshizuka, Y.Oka
    • Journal Title

      Proc. Int.Conf. Global Environment and Advanced Nuclear Power Plants (GENES4/ANP2003)

      Pages: Paper-1019

    • Description
      「研究成果報告書概要(和文)」より
  • [Journal Article] Numerical Simulation of a Single Drop Impact on Liquid Surface using Particle Method2003

    • Author(s)
      H.Xie, S.Koshizuka, Y.Oka
    • Journal Title

      Proc.Int.Conf.Global Environment and Advanced Nuclear Power Plants (GENES4/ANP2003) Paper-1019

    • Description
      「研究成果報告書概要(欧文)」より
  • [Book] 粒子法2005

    • Author(s)
      塚越誠一
    • Total Pages
      144
    • Publisher
      丸善
    • Description
      「研究成果報告書概要(和文)」より
  • [Book] Ryushiho2005

    • Author(s)
      S.Koshizuka
    • Publisher
      Maruzen
    • Description
      「研究成果報告書概要(欧文)」より

URL: 

Published: 2006-07-11  

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