@inproceedings{03235625563541b6ad4af5b56cf7facf,
title = "Numerical study on annular-mist flow in V-Cone meter for wet gas metering",
abstract = "Increasing attention is paid on wet gas flow measurement with V-Cone meter in the production of natural gas. Annular-mist flow is a common flow regime in the wet gas flow metering. Knowledge of the annular-mist flow such as the distributions of the pressure, the droplet and the liquid film in the V-Cone meter is critical to improve the wet gas measurement model. In this paper, a numerical method based on a three-fluid closure model of film, droplet and gas was developed to simulate the annular-mist wet gas flow in the V-Cone meter. The method agreed well with the existing correlation and the relative error of simulation data is less than ±2.5\%. The distributions of the droplet, liquid film and static pressure in a V-cone meter and the results on different flow conditions were simulated with the present method. The simulations showed that under the adjustment of the V-Cone element, the droplets moved in a straight path close to the wall after the throat section and a liquid jet was formed. It continues through the diffuser and reattaches to the wall. Some droplets will re-coalescence in the downstream of the V-Cone. It was found that little droplet was entrained in the back of the V-Cone, which was benefit for obtaining the low pressure. The results of the liquid film distribution showed that the liquid film thickness on the pipe wall and the cone body was affected by both the geometry of the V-Cone and the area and strength of the low pressure domain. The pressure in the low pressure domain decreased with the liquid and gas velocity increasing, and the gas-to-liquid viscosity ratio had little effects on the pressure distribution. The downstream low pressure port justifiably locates at six or more pipe diameters downstream of the cone back face for the present V-Cone meter.",
keywords = "Differential pressure, Numerical simulation, Two phase flow, V-Cone meter, Wet gas",
author = "Bofeng Bai and Denghui He and Rifeng Zhou",
year = "2014",
doi = "10.1063/1.4872095",
language = "英语",
isbn = "9780735412262",
series = "AIP Conference Proceedings",
publisher = "American Institute of Physics Inc.",
pages = "121--129",
booktitle = "8th International Symposium on Measurement Techniques for Multiphase Flows, ISMTMF 2013",
note = "8th International Symposium on Measurement Techniques for Multiphase Flows, ISMTMF 2013 ; Conference date: 13-12-2013 Through 15-12-2013",
}