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Slug flow measurement using a combined swirler and extended-throat Venturi device

  • Lulu Li
  • , Qiang Xu
  • , Haocun Wang
  • , Xuemei Zhang
  • , Xiaojun Ma
  • , Qimeng Liu
  • , Liejin Guo
  • Xi'an Jiaotong University

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

A new method based on phase isolation for two-phase slug flow measurement is proposed in this study. A swirler installed upstream of an extended-throat Venturi (ETV) tube transforms slug flow into gas–liquid two-phase swirling flow. When the liquid superficial Reynolds number (Resl) is held constant, the two-phase multiplier for the radial pressure difference (φrl2) decreases with an increasing liquid–gas mass ratio (ml/mg). When either the liquid mass flow rate (ml) or the gas mass flow rate (mg) remains constant, the ratio K of the radial pressure difference of the gas–liquid two-phase swirling flow to the axial pressure difference in the front half of the throat section increases monotonically with an increasing ml/mg. By employing K to simplify the relationship of φrl2 with Resl and ml/mg into an expression containing only ml, and utilizing the monotonic relationship between ml/mg and K, measurement of the flow rates for each phase was achieved. Within the inlet gas superficial velocity range of 0.76–5.69 m/s, the liquid superficial velocity range of 1.02–1.87 m/s, and the gas volume fraction range of 29 %-85 %, for 95.18 % of the test points, the relative errors of ml and mg are respectively within ± 0.92 % and ± 9.89 %.

Original languageEnglish
Article number120266
JournalMeasurement: Journal of the International Measurement Confederation
Volume264
DOIs
StatePublished - 10 Mar 2026

Keywords

  • Extended-throat Venturi
  • Pressure difference
  • Slug flow measurement
  • Swirler

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