Simulation of coarse mixing of the vapour explosion

Authors

  • Hirotada Ohashi University of Tokyo
    Japan
  • Takuya Takano University of Tokyo
    Japan
  • Yanhua Yang University of Tokyo
    Japan
  • Mamoru Akiyama University of Tokyo
    Japan
  • Tadashi Morii Mitsubishi Atomic Power Industries, Inc.
    Japan
  • Yumi Ogawa Mitsubishi Atomic Power Industries, Inc.
    Japan

Abstract

The vapour explosion is a violent explosive phenomenon which may occur when two kinds of liquid of different temperature contact suddenly. Analysis of this phenomenon is needed in terms of safety evaluation of nuclear reactors, examination of volcanic eruptions and assurance of safety of various industrial processes. We have developed a simulation method applicable to coarse mixing of the vapour explosion. This process, including complex thermo-hydrodynamics, requires handling of multi-phase and multi-component. We employed CHAMPAGNE which is a general-purpose multi-phase flow code and modified it make it suitable for the analysis of the vapour explosion . Specifically, we improved interfacial heat transfer models and incorporated compensation for numerical dilution of the dispersed liquid . After some model calculations we simulated the MIXA experiment done at Winfrith. Details of the code modification and the simulation results are presented in this paper.

References

[1] M. Akiyama (ed.). Dynamics of Vapor Explosions - Status and Perspective, Chapter 3, 1993.
[2] T. Morii, Y. Ogawa. Development of the multi-phase flow simulation code. Proc . Multi-Phase Flow Symposium, B17, 1993.
[3] T. Morii, Y. Ogawa. Development of fully-implicit fluid dynamics code for multiphase and multicomponent flow . Proc. NURETH-6, 303, 1993.
[4] D.F. Fletcher, M.K. Denham. Validation of the CRYMES mixing model. Proc. CSNI-FCI Specialists' Meeting, 1.7, 1993.

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Published

2023-07-18

Issue

pp. 79-86

Section

Articles

How to Cite

Ohashi, H., Takano, T., Yang, Y., Akiyama, M., Morii, T., & Ogawa, Y. (2023). Simulation of coarse mixing of the vapour explosion. Computer Assisted Methods in Engineering and Science, 2(2), 79-86. https://cames3.ippt.pan.pl/index.php/cames/article/view/1478