Sand Transportations and Deposition Characteristics in Multiphase Flows in Pipelines

Author:

Al-lababidi S.1,Yan W.,Yeung H.2

Affiliation:

1. Multiphase Fluids Engineering Solutions Ltd, Milton Keynes, United Kingdom, MK10 7AY

2. Department of Offshore, Process and Energy Engineering, Cranfield University, Cranfield MK43 0AL, United Kingdom

Abstract

Sand management strategies become an important study to be performed as part of multiphase flow assurance assessments during oil and gas project life and especially for subsea multiphase flow network. This paper presents experimental works to investigate the sand transport characteristics and identify the sand minimum transport condition (MTC) in sand–water and sand–air–water flows in a horizontal and + 5 deg inclined pipelines. The used sand volume fraction, Cv, ranged from 1.61 × 10−5 up to 5.38 × 10−4. The sand minimum transport velocity in single-phase water flow was obtained visually and then compared with that calculated by previous correlations for slurry transport. It was found that in sand–water flow, the pipeline inclination had negligible effect on the minimum sand transport velocity. However, the transport characteristics of sand particles were found changed significantly by changing the pipe inclination, which could result in the change of air–water flow regime. It was observed that sand particles transport more efficiently in terrain slug than stratified wavy flow in +5 deg inclined pipes. The sand transport and settling boundary for different air–water flow regimes were generated for horizontal and +5 deg inclined pipeline.

Publisher

ASME International

Subject

Geochemistry and Petrology,Mechanical Engineering,Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment

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4. Nilson, P. J., and Kvernvold, O., 1998, “Corrosion Inhibitors Eeffect on Sand Accumulation in Horizontal Multiphase Flowlines,” Technical Report No. 98–3285, Det Norske Veritas.

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