American Nuclear Society
Home

Home / Publications / Journals / Nuclear Science and Engineering / Volume 196 / Number 6

Gas-Liquid Two-Phase Flow Regime in a Horizontal Channel Under Transverse Vibration

Bo Sun, Yunlong Zhou

Nuclear Science and Engineering / Volume 196 / Number 6 / June 2022 / Pages 751-768

Technical Paper / dx.doi.org/10.1080/00295639.2021.2011669

Received:May 14, 2021
Accepted:November 24, 2021
Published:May 5, 2022

This paper presents experiments carried out to study the influences of transverse vibration on horizontal gas-liquid two-phase flow. The experiments considered the transverse vibration over a wide range of vibration frequencies and vibration amplitudes. Five typical flow regimes were observed. The fluid flow conditions in steady state and transverse vibration were compared. The traditional flow regime transition lines did not match the gas-liquid flow in channel under transverse vibration. The results suggest that vibration frequency mainly affected the flow regime by promoting the aggregation of gas slug, while vibration amplitude mainly influenced the fluctuation height of the gas and liquid interface.