A Pressure-Based Multiphase Flowmeter: Proof of Concept

Author:

Ramakrishnan Vijay1ORCID,Arsalan Muhammad2

Affiliation:

1. Aramco Americas, Houston, TX 77084, USA

2. Saudi Aramco, Dhahran 31311, Saudi Arabia

Abstract

Multiphase flowmeters (MPFMs) measure the flow rates of oil, gas, and brine in a pipeline. MPFMs provide remote access to real-time well production data that are essential for efficient oil field operations. Most MPFMs are complex systems requiring frequent maintenance. An MPFM that is operationally simple and accurate is highly sought after in the energy industry. This paper describes an MPFM that uses only pressure sensors to measure gas and liquid flow rates. The design is an integration of a previously developed densitometer with an innovative Venturi-type flowmeter. New computing models with strong analytical foundations were developed, aided by empirical correlations and machine-learning-based flow-regime identification. A prototype was experimentally validated in a multiphase flow loop over a wide range of field-like conditions. The accuracy of the MPFM was compared to that of other multiphase metering techniques from similar studies. The results point to a robust, practical MPFM.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference20 articles.

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2. Corneliussen, S., Couput, J., Dahl, E., Dykesteen, E., Frøysa, K., Malde, E., Moestue, H., Moksnes, P.O., Scheers, L., and Tunheim, H. (2005). Handbook of Multiphase Flow Metering, revision 2, Norwegian Society for Oil and Gas Measurement (NFOGM).

3. Hansen, L.S., Pedersen, S., and Durdevic, P. (2019). Multi-Phase Flow Metering in Offshore Oil and Gas Transportation Pipelines: Trends and Perspectives. Sensors, 19.

4. Tromp, R.R., and Cerioni, L.M.C. (2021). Multiphase Flow Regime Characterization and Liquid Flow Measurement Using Low-Field Magnetic Resonance Imaging. Molecules, 26.

5. Evolution of Wet Gas Venturi Metering and Wet Gas Correction Algorithms;Collins;Meas. Control,2013

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