Interference analysis and operability envelopes design for deepwater parallel strings

Dual derrick operations are widely used for field development during offshore drilling. During this process, complex operations and complicated hydrodynamic interaction may contribute to the interference collisions of parallel strings. In this context, this study addresses interference collisions fo...

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Main Authors: Zhu Jingyu, Liu Kang, Chen Guoming, Zhu Gaogeng
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:Oil & Gas Science and Technology
Online Access:https://ogst.ifpenergiesnouvelles.fr/articles/ogst/full_html/2019/01/ogst180395/ogst180395.html
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spelling doaj-a2135e50e47b4bf4bc9e05849be37e7e2021-02-02T08:45:07ZengEDP SciencesOil & Gas Science and Technology1294-44751953-81892019-01-01747110.2516/ogst/2019033ogst180395Interference analysis and operability envelopes design for deepwater parallel stringsZhu JingyuLiu KangChen GuomingZhu GaogengDual derrick operations are widely used for field development during offshore drilling. During this process, complex operations and complicated hydrodynamic interaction may contribute to the interference collisions of parallel strings. In this context, this study addresses interference collisions for parallel strings during the deepwater dual derrick operation. To analyze the response of parallel strings a mechanical model for deepwater parallel strings is established. Moreover, Huse wake model and strip model are used for calculating the hydrodynamic influence in different wake fields. The research results validate that the collision will occur during the operation considering the hydrodynamic wake shielding effects and interference evaluation criterion. The increasing platform offsets and surface current are the leading causes of parallel strings collisions. To avoid the risk of interference collisions an innovative procedure for operability envelopes is developed by synthesizing the platform offsets and surface currents. The proposed operability envelopes method for parallel strings is automatically completed which can save much workforce and resources. A case study on deepwater drilling in the South China Sea has been applied to verify the effectiveness of these methods. Besides, the proposed methodology can effectively reduce collision accidents and provide technical support for the offshore oil and gas exploration.https://ogst.ifpenergiesnouvelles.fr/articles/ogst/full_html/2019/01/ogst180395/ogst180395.html
collection DOAJ
language English
format Article
sources DOAJ
author Zhu Jingyu
Liu Kang
Chen Guoming
Zhu Gaogeng
spellingShingle Zhu Jingyu
Liu Kang
Chen Guoming
Zhu Gaogeng
Interference analysis and operability envelopes design for deepwater parallel strings
Oil & Gas Science and Technology
author_facet Zhu Jingyu
Liu Kang
Chen Guoming
Zhu Gaogeng
author_sort Zhu Jingyu
title Interference analysis and operability envelopes design for deepwater parallel strings
title_short Interference analysis and operability envelopes design for deepwater parallel strings
title_full Interference analysis and operability envelopes design for deepwater parallel strings
title_fullStr Interference analysis and operability envelopes design for deepwater parallel strings
title_full_unstemmed Interference analysis and operability envelopes design for deepwater parallel strings
title_sort interference analysis and operability envelopes design for deepwater parallel strings
publisher EDP Sciences
series Oil & Gas Science and Technology
issn 1294-4475
1953-8189
publishDate 2019-01-01
description Dual derrick operations are widely used for field development during offshore drilling. During this process, complex operations and complicated hydrodynamic interaction may contribute to the interference collisions of parallel strings. In this context, this study addresses interference collisions for parallel strings during the deepwater dual derrick operation. To analyze the response of parallel strings a mechanical model for deepwater parallel strings is established. Moreover, Huse wake model and strip model are used for calculating the hydrodynamic influence in different wake fields. The research results validate that the collision will occur during the operation considering the hydrodynamic wake shielding effects and interference evaluation criterion. The increasing platform offsets and surface current are the leading causes of parallel strings collisions. To avoid the risk of interference collisions an innovative procedure for operability envelopes is developed by synthesizing the platform offsets and surface currents. The proposed operability envelopes method for parallel strings is automatically completed which can save much workforce and resources. A case study on deepwater drilling in the South China Sea has been applied to verify the effectiveness of these methods. Besides, the proposed methodology can effectively reduce collision accidents and provide technical support for the offshore oil and gas exploration.
url https://ogst.ifpenergiesnouvelles.fr/articles/ogst/full_html/2019/01/ogst180395/ogst180395.html
work_keys_str_mv AT zhujingyu interferenceanalysisandoperabilityenvelopesdesignfordeepwaterparallelstrings
AT liukang interferenceanalysisandoperabilityenvelopesdesignfordeepwaterparallelstrings
AT chenguoming interferenceanalysisandoperabilityenvelopesdesignfordeepwaterparallelstrings
AT zhugaogeng interferenceanalysisandoperabilityenvelopesdesignfordeepwaterparallelstrings
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