The Challenges of Multiphase Flow Metering: Today and Beyond

Since the early 1990’s, when the first commercial meters started to appear, Multiphase Flow Metering (MFM) has grown from being an area of R and D to representing a discipline in its own right within the oil and gas industry. The total figure for MFM installations worldwide is now over 1,800. Field...

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Published in:Volume 2: Structures, Safety and Reliability; Petroleum Technology Symposium
Main Authors: Falcone, Gioia, Alimonti, Claudio
Format: Conference Object
Language:unknown
Published: 2007
Subjects:
Online Access:http://eprints.gla.ac.uk/170807/
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spelling ftuglasgow:oai:eprints.gla.ac.uk:170807 2023-05-15T14:26:08+02:00 The Challenges of Multiphase Flow Metering: Today and Beyond Falcone, Gioia Alimonti, Claudio 2007 http://eprints.gla.ac.uk/170807/ unknown Falcone, G. <http://eprints.gla.ac.uk/view/author/46939.html> and Alimonti, C. (2007) The Challenges of Multiphase Flow Metering: Today and Beyond. In: ASME 2007 26th International Conference on Offshore Mechanics and Arctic Engineering, San Diego, California, USA, 10-15 June 2007, pp. 823-834. ISBN 9780791842683 (doi:10.1115/OMAE2007-29527 <http://dx.doi.org/10.1115/OMAE2007-29527>) Conference Proceedings PeerReviewed 2007 ftuglasgow https://doi.org/10.1115/OMAE2007-29527 2020-01-10T01:45:03Z Since the early 1990’s, when the first commercial meters started to appear, Multiphase Flow Metering (MFM) has grown from being an area of R and D to representing a discipline in its own right within the oil and gas industry. The total figure for MFM installations worldwide is now over 1,800. Field applications include production optimisation, wet gas metering, mobile well testing and production allocation. However, MFM has not yet achieved its full potential. Despite an impressive improvement in the reliability of sensors and mechanical parts (particularly for subsea installations) over the past few years, there remain unresolved questions regarding the accuracy and range of applicability of today’s MFM technology. There is also a tendency to forget the complexity of multiphase flow and to evaluate the overall performance of a MFM as a “black box”, often neglecting all the possible uncertainties that are inherent in each individual measurement solutions. This paper reviews the inherent limitations of some classical MFM techniques. It highlights the impact of instruments rangeability, empirical correlations for pressure drop devices and fluids characterisation on the error propagation analysis in the “black box”. It also provides a comprehensive review of wet gas definitions for the oil and gas industry. Several attempts have been made to define “wet gas” for the purpose of metering streams at high gas-volume-fractions, but a single definition of wet gas still does not exist. The measurement of multiphase flows presents unique challenges that have not yet been fully resolved. However, the challenges are exciting and the authors have no doubts that new milestones will soon be set in this area. Today’s MFM technology has already become one piece of the optimised production system jigsaw. MFM has succeeded in fitting with other technologies toward global field-wide solutions. The ideal MFM of the future is one that provides unambiguous measurements of key parameters from which the flow rates can be deduced independently from flow regimes and fluid properties. Conference Object Arctic University of Glasgow: Enlighten - Publications Volume 2: Structures, Safety and Reliability; Petroleum Technology Symposium 823 834
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collection University of Glasgow: Enlighten - Publications
op_collection_id ftuglasgow
language unknown
description Since the early 1990’s, when the first commercial meters started to appear, Multiphase Flow Metering (MFM) has grown from being an area of R and D to representing a discipline in its own right within the oil and gas industry. The total figure for MFM installations worldwide is now over 1,800. Field applications include production optimisation, wet gas metering, mobile well testing and production allocation. However, MFM has not yet achieved its full potential. Despite an impressive improvement in the reliability of sensors and mechanical parts (particularly for subsea installations) over the past few years, there remain unresolved questions regarding the accuracy and range of applicability of today’s MFM technology. There is also a tendency to forget the complexity of multiphase flow and to evaluate the overall performance of a MFM as a “black box”, often neglecting all the possible uncertainties that are inherent in each individual measurement solutions. This paper reviews the inherent limitations of some classical MFM techniques. It highlights the impact of instruments rangeability, empirical correlations for pressure drop devices and fluids characterisation on the error propagation analysis in the “black box”. It also provides a comprehensive review of wet gas definitions for the oil and gas industry. Several attempts have been made to define “wet gas” for the purpose of metering streams at high gas-volume-fractions, but a single definition of wet gas still does not exist. The measurement of multiphase flows presents unique challenges that have not yet been fully resolved. However, the challenges are exciting and the authors have no doubts that new milestones will soon be set in this area. Today’s MFM technology has already become one piece of the optimised production system jigsaw. MFM has succeeded in fitting with other technologies toward global field-wide solutions. The ideal MFM of the future is one that provides unambiguous measurements of key parameters from which the flow rates can be deduced independently from flow regimes and fluid properties.
format Conference Object
author Falcone, Gioia
Alimonti, Claudio
spellingShingle Falcone, Gioia
Alimonti, Claudio
The Challenges of Multiphase Flow Metering: Today and Beyond
author_facet Falcone, Gioia
Alimonti, Claudio
author_sort Falcone, Gioia
title The Challenges of Multiphase Flow Metering: Today and Beyond
title_short The Challenges of Multiphase Flow Metering: Today and Beyond
title_full The Challenges of Multiphase Flow Metering: Today and Beyond
title_fullStr The Challenges of Multiphase Flow Metering: Today and Beyond
title_full_unstemmed The Challenges of Multiphase Flow Metering: Today and Beyond
title_sort challenges of multiphase flow metering: today and beyond
publishDate 2007
url http://eprints.gla.ac.uk/170807/
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op_relation Falcone, G. <http://eprints.gla.ac.uk/view/author/46939.html> and Alimonti, C. (2007) The Challenges of Multiphase Flow Metering: Today and Beyond. In: ASME 2007 26th International Conference on Offshore Mechanics and Arctic Engineering, San Diego, California, USA, 10-15 June 2007, pp. 823-834. ISBN 9780791842683 (doi:10.1115/OMAE2007-29527 <http://dx.doi.org/10.1115/OMAE2007-29527>)
op_doi https://doi.org/10.1115/OMAE2007-29527
container_title Volume 2: Structures, Safety and Reliability; Petroleum Technology Symposium
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