Wellbore annulus water hammer pressure prediction based on transient multi-phase flow characteristics

Water hammer pressure has been known to cause formation fracture and well-control problems. Accurate prediction of water hammer pressure is crucially important to determine the selection of shut-in methods. In this study, the mathematic model of wellbore annulus transient water hammer has been estab...

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Main Authors: Fu Jianhong, Su Yu, Jiang Wei, Li Shuanggui, Chen Yingjie
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/ogst190135/ogst190135.html
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spelling doaj-aedceb4e77ae4efaac6b0dc78a5ef1b52021-02-02T06:51:00ZengEDP SciencesOil & Gas Science and Technology1294-44751953-81892019-01-01748410.2516/ogst/2019058ogst190135Wellbore annulus water hammer pressure prediction based on transient multi-phase flow characteristicsFu JianhongSu YuJiang WeiLi ShuangguiChen YingjieWater hammer pressure has been known to cause formation fracture and well-control problems. Accurate prediction of water hammer pressure is crucially important to determine the selection of shut-in methods. In this study, the mathematic model of wellbore annulus transient water hammer has been established with the consideration of transient multi-phase flow characteristics, and it has been solved by the Method Of Characteristic (MOC). Finally, this paper focused on the effects of gas cutting, shut-in time and friction on water hammer pressure, and gas kick time were also regarded to study on the influence of water hammer pressure. The results show that both the gas cutting and gas kick time have few influences on the maximum water hammer pressure, but intensified the attenuation of water hammer pressure. Additionally, the peak value of water hammer pressure declines with the increase of the shut-in time, and the effect of friction loss on water hammer pressure became significant with the increase of well depth. More importantly, both the additional water hammer pressure and Shut-In Casing Pressure (SICP) generated by the closure of BlowOut Preventer (BOP) are likely to cause formation at the shallow casing shoe damage.https://ogst.ifpenergiesnouvelles.fr/articles/ogst/full_html/2019/01/ogst190135/ogst190135.html
collection DOAJ
language English
format Article
sources DOAJ
author Fu Jianhong
Su Yu
Jiang Wei
Li Shuanggui
Chen Yingjie
spellingShingle Fu Jianhong
Su Yu
Jiang Wei
Li Shuanggui
Chen Yingjie
Wellbore annulus water hammer pressure prediction based on transient multi-phase flow characteristics
Oil & Gas Science and Technology
author_facet Fu Jianhong
Su Yu
Jiang Wei
Li Shuanggui
Chen Yingjie
author_sort Fu Jianhong
title Wellbore annulus water hammer pressure prediction based on transient multi-phase flow characteristics
title_short Wellbore annulus water hammer pressure prediction based on transient multi-phase flow characteristics
title_full Wellbore annulus water hammer pressure prediction based on transient multi-phase flow characteristics
title_fullStr Wellbore annulus water hammer pressure prediction based on transient multi-phase flow characteristics
title_full_unstemmed Wellbore annulus water hammer pressure prediction based on transient multi-phase flow characteristics
title_sort wellbore annulus water hammer pressure prediction based on transient multi-phase flow characteristics
publisher EDP Sciences
series Oil & Gas Science and Technology
issn 1294-4475
1953-8189
publishDate 2019-01-01
description Water hammer pressure has been known to cause formation fracture and well-control problems. Accurate prediction of water hammer pressure is crucially important to determine the selection of shut-in methods. In this study, the mathematic model of wellbore annulus transient water hammer has been established with the consideration of transient multi-phase flow characteristics, and it has been solved by the Method Of Characteristic (MOC). Finally, this paper focused on the effects of gas cutting, shut-in time and friction on water hammer pressure, and gas kick time were also regarded to study on the influence of water hammer pressure. The results show that both the gas cutting and gas kick time have few influences on the maximum water hammer pressure, but intensified the attenuation of water hammer pressure. Additionally, the peak value of water hammer pressure declines with the increase of the shut-in time, and the effect of friction loss on water hammer pressure became significant with the increase of well depth. More importantly, both the additional water hammer pressure and Shut-In Casing Pressure (SICP) generated by the closure of BlowOut Preventer (BOP) are likely to cause formation at the shallow casing shoe damage.
url https://ogst.ifpenergiesnouvelles.fr/articles/ogst/full_html/2019/01/ogst190135/ogst190135.html
work_keys_str_mv AT fujianhong wellboreannuluswaterhammerpressurepredictionbasedontransientmultiphaseflowcharacteristics
AT suyu wellboreannuluswaterhammerpressurepredictionbasedontransientmultiphaseflowcharacteristics
AT jiangwei wellboreannuluswaterhammerpressurepredictionbasedontransientmultiphaseflowcharacteristics
AT lishuanggui wellboreannuluswaterhammerpressurepredictionbasedontransientmultiphaseflowcharacteristics
AT chenyingjie wellboreannuluswaterhammerpressurepredictionbasedontransientmultiphaseflowcharacteristics
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