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National University of Singapore

STUDY OF THREE-PHASE AIR-BRINE-SALT COUNTERFLOW IN AN INCLINED PIPE

Abstract

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Gas-liquid-solid counterflow (GLSCF) in inclined pipes occurs in various industrial processes, including oil and gas production and desalination systems. This thesis presents an experimental investigation of GLSCF in a 2-inch pipe inclined at 30°, utilizing air, saturated brine, and salt particles. A wide range of gas and liquid superficial velocities were tested. High-speed and standard-speed video recordings, pressure, and fluid level measurements were used to analyze flow regimes, bubble characteristics (length, velocity, depth, frequency), void fraction, and solid particle velocity. This study introduces a novel flow-regime map combining concurrent and countercurrent flow regimes. Empirical equations were developed to predict average bubble length, depth, velocity, and cross-sectional void fraction. Additionally, a new flow phenomenon, stationary tri-axial vortices, was identified and characterized. This research provides valuable data and empirical correlations for GLSCF, with implications for industrial applications and future development of numerical models.

Author and committee

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Author dc:creator
  • NISIM SHUSHAN

Subjects

dc:subject × 6

Rights

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Chain of custody

source
Harvested from
National University of Singapore
Base URL
scholarbank.nus.edu.sg/oai/request
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

NISIM SHUSHAN. STUDY OF THREE-PHASE AIR-BRINE-SALT COUNTERFLOW IN AN INCLINED PIPE. 2024.