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2014 Fiscal Year Annual Research Report

Development of an accurate and efficient particle method for practical simulations of multiphase fluid flows

Research Project

Project/Area Number 25820224
Research InstitutionKyoto University

Principal Investigator

KHAYYER Abbas  京都大学, 工学(系)研究科(研究院), 准教授 (80534263)

Project Period (FY) 2013-04-01 – 2015-03-31
Keywordsmultiphase flows / particle method / MPS method / surface tension
Outline of Annual Research Achievements

The research aimed at proposing an accurate, reliable particle-based computational tool for practical simulations of multiphase flows. During the first phase of this research an accurate and reliable multiphase particle method (for multiphase flows characterized by large density ratios up to 1:1000) was developed and was rigorously verified by a number of academic benchmark tests. This part of research was published in Journal of Computational Physics. Although the second phase of research was initially devoted to GPU-based implementation of the developed multiphase code, the method was decided to be further enhanced for a comprehensive and accurate modeling of multiphase flows, including surface tension and turbulence modeling. An accurate surface tension model was then proposed.

  • Research Products

    (2 results)

All 2014

All Journal Article (1 results) Presentation (1 results)

  • [Journal Article] A New Surface Tension for Particle Methods with Enhanced Splash Computation2014

    • Author(s)
      A. Khayyer, H. Gotoh, N. Tsuruta
    • Journal Title

      Journal of Japan Society of Civil Engineers, Ser. B2 (Coastal Engineering)

      Volume: 70 Pages: 26-30

    • DOI

      https://www.jstage.jst.go.jp/article/kaigan/70/2/70_I_26/_article

  • [Presentation] A Novel Laplacian-Based Surface Tension Model for Particle Methods2014

    • Author(s)
      A. Khayyer, H. Gotoh, N. Tsuruta
    • Organizer
      9th international SPHERIC workshop
    • Place of Presentation
      Paris, France
    • Year and Date
      2014-06-03 – 2014-06-05

URL: 

Published: 2016-06-01  

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