Spring-supported arch model for predicting hydrostatic collapse strength of flexible riser with layer gap

[<b>Objectives</b>] As oil and gas exploration enters the field of ultra-deep water,once the outer structure of the flexible riser is damaged,the inner carcass will carry huge external hydrostatic pressure. As one of the geometric imperfections,the gap between the carcass and pressure am...

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Main Authors: Li Xiao, Jiang Xiaoli, Hopman Hans
Format: Article
Language:English
Published: Editorial Office of Chinese Journal of Ship Research 2019-12-01
Series:Zhongguo Jianchuan Yanjiu
Subjects:
Online Access:http://www.ship-research.com/EN/Y2019/V14/IS2/15
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spelling doaj-859dfff72a4b48b18b08d9e5882762102020-11-25T03:37:42ZengEditorial Office of Chinese Journal of Ship ResearchZhongguo Jianchuan Yanjiu1673-31851673-31852019-12-0114S2152210.19693/j.issn.1673-3185.019672019-S2-15Spring-supported arch model for predicting hydrostatic collapse strength of flexible riser with layer gapLi Xiao0Jiang Xiaoli1Hopman Hans2Department of Maritime and Transport Technology, Delft University of Technology, Delft 2628 CN, NetherlandsDepartment of Maritime and Transport Technology, Delft University of Technology, Delft 2628 CN, NetherlandsDepartment of Maritime and Transport Technology, Delft University of Technology, Delft 2628 CN, Netherlands[<b>Objectives</b>] As oil and gas exploration enters the field of ultra-deep water,once the outer structure of the flexible riser is damaged,the inner carcass will carry huge external hydrostatic pressure. As one of the geometric imperfections,the gap between the carcass and pressure amour may cause a significant reduction in the collapse strength of flexible risers,which will lead to the so-called wet collapse.[<b>Methods</b>] Aiming at this problem,this paper presents a spring-supported arch model for estimating the collapse strength of a subsea flexible riser with a layer gap,and the wet collapse process of the carcass is divided into pre-contact and post-contact phases. In the pre-contact phase,the instability behavior of the inner carcass is analyzed using the stability theory of single ring structure. When the interlayer gap is closed,the carcass begins to be supported by the pressure armor,and the structure enters the post-contact phase,here the outside pressure amour is considered as springs which support the detached portion of the inner carcass. At the same time,the finite element collapse model is employed to verify the reliability of this spring-supported arch model for a set of gap widths.[<b>Results</b>] The predictions of the proposed models agree very well with the numerical results,and the collapse pressure is very sensitive to the stiffness of the pressure amour and layer gap width. When the initial gap width between layers increases from 0 to 0.5 mm,the collapse pressure of the flexible riser will decrease by about 18%。If the tightly fitted carcass is supported by a stiffer pressure amour,the collapse strength will be greatly improved.[<b>Conclusions</b>] For a flexible riser with a harder pressure amour and a smaller layer gap,the proposed analytical model can effectively predict its hydrostatic crushing strength.http://www.ship-research.com/EN/Y2019/V14/IS2/15flexible risercritical collapse pressurelayer gapwet collapseultra-deep water
collection DOAJ
language English
format Article
sources DOAJ
author Li Xiao
Jiang Xiaoli
Hopman Hans
spellingShingle Li Xiao
Jiang Xiaoli
Hopman Hans
Spring-supported arch model for predicting hydrostatic collapse strength of flexible riser with layer gap
Zhongguo Jianchuan Yanjiu
flexible riser
critical collapse pressure
layer gap
wet collapse
ultra-deep water
author_facet Li Xiao
Jiang Xiaoli
Hopman Hans
author_sort Li Xiao
title Spring-supported arch model for predicting hydrostatic collapse strength of flexible riser with layer gap
title_short Spring-supported arch model for predicting hydrostatic collapse strength of flexible riser with layer gap
title_full Spring-supported arch model for predicting hydrostatic collapse strength of flexible riser with layer gap
title_fullStr Spring-supported arch model for predicting hydrostatic collapse strength of flexible riser with layer gap
title_full_unstemmed Spring-supported arch model for predicting hydrostatic collapse strength of flexible riser with layer gap
title_sort spring-supported arch model for predicting hydrostatic collapse strength of flexible riser with layer gap
publisher Editorial Office of Chinese Journal of Ship Research
series Zhongguo Jianchuan Yanjiu
issn 1673-3185
1673-3185
publishDate 2019-12-01
description [<b>Objectives</b>] As oil and gas exploration enters the field of ultra-deep water,once the outer structure of the flexible riser is damaged,the inner carcass will carry huge external hydrostatic pressure. As one of the geometric imperfections,the gap between the carcass and pressure amour may cause a significant reduction in the collapse strength of flexible risers,which will lead to the so-called wet collapse.[<b>Methods</b>] Aiming at this problem,this paper presents a spring-supported arch model for estimating the collapse strength of a subsea flexible riser with a layer gap,and the wet collapse process of the carcass is divided into pre-contact and post-contact phases. In the pre-contact phase,the instability behavior of the inner carcass is analyzed using the stability theory of single ring structure. When the interlayer gap is closed,the carcass begins to be supported by the pressure armor,and the structure enters the post-contact phase,here the outside pressure amour is considered as springs which support the detached portion of the inner carcass. At the same time,the finite element collapse model is employed to verify the reliability of this spring-supported arch model for a set of gap widths.[<b>Results</b>] The predictions of the proposed models agree very well with the numerical results,and the collapse pressure is very sensitive to the stiffness of the pressure amour and layer gap width. When the initial gap width between layers increases from 0 to 0.5 mm,the collapse pressure of the flexible riser will decrease by about 18%。If the tightly fitted carcass is supported by a stiffer pressure amour,the collapse strength will be greatly improved.[<b>Conclusions</b>] For a flexible riser with a harder pressure amour and a smaller layer gap,the proposed analytical model can effectively predict its hydrostatic crushing strength.
topic flexible riser
critical collapse pressure
layer gap
wet collapse
ultra-deep water
url http://www.ship-research.com/EN/Y2019/V14/IS2/15
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AT jiangxiaoli springsupportedarchmodelforpredictinghydrostaticcollapsestrengthofflexibleriserwithlayergap
AT hopmanhans springsupportedarchmodelforpredictinghydrostaticcollapsestrengthofflexibleriserwithlayergap
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