2023 Fall Meeting

Presentation information

Oral presentation

III. Fission Energy Engineering » 304-1 Thermal Hydraulics, Energy Conversion, Energy Transfer, Energy Storage

[1G08-12] Multiphase Flow

Wed. Sep 6, 2023 2:45 PM - 4:10 PM Room G (ES Bildg. 2F ES021)

Chair:Miki Saito(CRIEPI)

3:15 PM - 3:30 PM

[1G10] Numerical simulation of droplet entrainment and deposition phenomena in annular dispersed flow

*Naoki Horiguchi1, Hiroyuki Yoshida1, Yuki Narushima2, Kenichi Katono2 (1. JAEA, 2. Hitachi)

Keywords:Annular dispersed flow, Droplet entrainment mass flux, Droplet deposition mass flux, Numerical simulation, TPFIT

Droplet entrainment and deposition in annular dispersed flow are important phenomena to predict dryout phenomena. Many correlation equations have been proposed to determine the mass flux of entrainment and deposition, but the clarification of entrainment and deposition phenomena is an issue because of the complexity of them and the difficulty of experiments. Detailed numerical simulation is useful for it but requires validation using the correlation equations. In this presentation, we explain the results of the detailed numerical simulation of droplet entrainment and deposition phenomena in annular dispersed flow using TPFIT developed by JAEA and the comparison of the mass flux quantified from the numerical simulation data with the ones using the correlation equations.

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