Published 2011 | Version v1
Journal article

Predicting critical heat flux in slug flow regime of uniformly heated vertical channel using coolant and geometric parameters

  • 1. National Nuclear Research Institute, Ghana Atomic Energy Commission, P.O. Box LG 80, Legon, Accra, (Ghana)
  • 2. Graduate School of Nuclear and Allied Sciences, University of Ghana, P.O. Box AE 1, Atomic Campus, Accra, (Ghana)

Description

Numerical computation code (PWR-DNBP) has been developed to predict Critical Heat Flux (CHF) of forced convective flow of water in a vertical heated channel. The code was based on the liquid sub-layered model, with the assumption that CHF occurred when the liquid film thickness between the heated surface and vapour in the slug flow regime attained critical film thickness of infinitesimally small value at positive liquid velocities for which the value of critical heat flux ratio (CHFR) ∼ 1. The numerical simulations predicted trends that CHF decreased with increasing flow quality, increased with increasing coolant mass flux, and increased with channel diameter. The predicted CHF were validated with data obtained by Tong's correlation, and the computational errors indicated deviations of 5 -10% uncertainty levels. (au)

Additional details

Publishing Information

Journal Title
Journal of Applied Science and Technology
Journal Volume
16
Journal Issue
1-2
Journal Page Range
p. 24-32
ISSN
0855-2215

Optional Information

Notes
8 figs., 4 tabs., 16 refs.