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Seabed characterisation and models for pipeline-soil interaction

Seabed characterisation and models for pipeline-soil interaction
Seabed characterisation and models for pipeline-soil interaction

Pipelines and flowlines represent major cost items in the development of deepwater fields. Accurate modelling of the axial and lateral pipe-soil resistance can lead to significant cost reductions by optimising design. Critical design issues include axial motion, or walking, of pipelines due to cyclic thermal changes, lateral buckling due to thermal expansion, and fatigue damage to risers in the touchdown region. Traditionally, interaction between a pipeline and the seabed has been simplified into frictional models for axial and lateral resistance during walking or buckling. Improving these models is a priority, but is hampered by (i) difficulties in characterising the behaviour of very low strength, near surface, seabed soils and (ii) a lack of detailed understanding of the soil mechanics of pipe-soil interaction. The cylindrical geometry of a pipeline invites comparison with the behaviour of tubular piles. Recent advances in pile design methods generated by considering the underlying soil mechanics indicate that the same potential exists for improving the understanding of pipeline behaviour. The paper describes recent advances in measuring the low shear strengths associated with near-surface seabed soils, using both in situ methods in the form of cylindrical (T-bar) and spherical penetrometers, and laboratory shear tests at very low effective stresses. The relationship between penetration resistance and the vertical and lateral resistance of pipelines is explored, taking account of the depth of burial, and cycles of movement. New approaches for assessing the axial and lateral resistance of on-bottom pipelines are described. Future trends and recent developments are summarised.

Deep-water, Friction, Penetration resistance, Pipe-soil interaction, Pipelines, Shear strength, Soil resistance
758-769
International Society of Offshore and Polar Engineers
White, David J.
a986033d-d26d-4419-a3f3-20dc54efce93
Randolph, Mark F.
75caa33a-e630-4ae8-84cd-758797bf9633
White, David J.
a986033d-d26d-4419-a3f3-20dc54efce93
Randolph, Mark F.
75caa33a-e630-4ae8-84cd-758797bf9633

White, David J. and Randolph, Mark F. (2007) Seabed characterisation and models for pipeline-soil interaction. In Proceedings of the 17th (2007) International Offshore and Polar Engineering Conference (ISOPE 2007). International Society of Offshore and Polar Engineers. pp. 758-769 .

Record type: Conference or Workshop Item (Paper)

Abstract

Pipelines and flowlines represent major cost items in the development of deepwater fields. Accurate modelling of the axial and lateral pipe-soil resistance can lead to significant cost reductions by optimising design. Critical design issues include axial motion, or walking, of pipelines due to cyclic thermal changes, lateral buckling due to thermal expansion, and fatigue damage to risers in the touchdown region. Traditionally, interaction between a pipeline and the seabed has been simplified into frictional models for axial and lateral resistance during walking or buckling. Improving these models is a priority, but is hampered by (i) difficulties in characterising the behaviour of very low strength, near surface, seabed soils and (ii) a lack of detailed understanding of the soil mechanics of pipe-soil interaction. The cylindrical geometry of a pipeline invites comparison with the behaviour of tubular piles. Recent advances in pile design methods generated by considering the underlying soil mechanics indicate that the same potential exists for improving the understanding of pipeline behaviour. The paper describes recent advances in measuring the low shear strengths associated with near-surface seabed soils, using both in situ methods in the form of cylindrical (T-bar) and spherical penetrometers, and laboratory shear tests at very low effective stresses. The relationship between penetration resistance and the vertical and lateral resistance of pipelines is explored, taking account of the depth of burial, and cycles of movement. New approaches for assessing the axial and lateral resistance of on-bottom pipelines are described. Future trends and recent developments are summarised.

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More information

Published date: 2007
Venue - Dates: 17th 2007 International Offshore and Polar Engineering Conference, ISOPE 2007, , Lisbon, Portugal, 2007-06-30 - 2007-07-05
Keywords: Deep-water, Friction, Penetration resistance, Pipe-soil interaction, Pipelines, Shear strength, Soil resistance

Identifiers

Local EPrints ID: 419855
URI: http://eprints.soton.ac.uk/id/eprint/419855
PURE UUID: 315a1b4e-b10c-4297-b1c5-baaae88de55b
ORCID for David J. White: ORCID iD orcid.org/0000-0002-2968-582X

Catalogue record

Date deposited: 23 Apr 2018 16:30
Last modified: 08 Jan 2022 03:32

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Contributors

Author: David J. White ORCID iD
Author: Mark F. Randolph

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