Prediction of water breakthrough time in horizontal Wells in edge water condensate gas reservoirs

Horizontal Wells are often used to develop condensate gas reservoirs. When there is edge water in the gas reservoir, it will have a negative impact on the production of natural gas. Therefore, reasonable prediction of its water breakthrough time is of great significance for the efficient development...

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Main Authors: Huang Quan Hua, Lin Xing Yu
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/73/e3sconf_acic2020_02009.pdf
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spelling doaj-19f6873c785b496a9b5d493c1c939d212021-04-02T19:03:13ZengEDP SciencesE3S Web of Conferences2267-12422020-01-012130200910.1051/e3sconf/202021302009e3sconf_acic2020_02009Prediction of water breakthrough time in horizontal Wells in edge water condensate gas reservoirsHuang Quan Hua0Lin Xing Yu1Petroleum engineering school, Southwest petroleum universityPetroleum engineering school, Southwest petroleum universityHorizontal Wells are often used to develop condensate gas reservoirs. When there is edge water in the gas reservoir, it will have a negative impact on the production of natural gas. Therefore, reasonable prediction of its water breakthrough time is of great significance for the efficient development of condensate gas reservoirs.At present, the prediction model of water breakthrough time in horizontal Wells of condensate gas reservoir is not perfect, and there are mainly problems such as incomplete consideration of retrograde condensate pollution and inaccurate determination of horizontal well seepage model. Based on the ellipsoidal horizontal well seepage model, considering the advance of edge water to the bottom of the well and condensate oil to formation, the advance of edge water is divided into two processes. The time when the first water molecule reaches the bottom of the well when the edge water tongue enters is deduced, that is, the time of edge water breakthrough in condensate gas reservoir.The calculation results show that the relative error of water breakthrough time considering retrograde condensate pollution is less than that without consideration, with a higher accuracy. The example error is less than 2%, which can be effectively applied to the development of edge water gas reservoir.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/73/e3sconf_acic2020_02009.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Huang Quan Hua
Lin Xing Yu
spellingShingle Huang Quan Hua
Lin Xing Yu
Prediction of water breakthrough time in horizontal Wells in edge water condensate gas reservoirs
E3S Web of Conferences
author_facet Huang Quan Hua
Lin Xing Yu
author_sort Huang Quan Hua
title Prediction of water breakthrough time in horizontal Wells in edge water condensate gas reservoirs
title_short Prediction of water breakthrough time in horizontal Wells in edge water condensate gas reservoirs
title_full Prediction of water breakthrough time in horizontal Wells in edge water condensate gas reservoirs
title_fullStr Prediction of water breakthrough time in horizontal Wells in edge water condensate gas reservoirs
title_full_unstemmed Prediction of water breakthrough time in horizontal Wells in edge water condensate gas reservoirs
title_sort prediction of water breakthrough time in horizontal wells in edge water condensate gas reservoirs
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description Horizontal Wells are often used to develop condensate gas reservoirs. When there is edge water in the gas reservoir, it will have a negative impact on the production of natural gas. Therefore, reasonable prediction of its water breakthrough time is of great significance for the efficient development of condensate gas reservoirs.At present, the prediction model of water breakthrough time in horizontal Wells of condensate gas reservoir is not perfect, and there are mainly problems such as incomplete consideration of retrograde condensate pollution and inaccurate determination of horizontal well seepage model. Based on the ellipsoidal horizontal well seepage model, considering the advance of edge water to the bottom of the well and condensate oil to formation, the advance of edge water is divided into two processes. The time when the first water molecule reaches the bottom of the well when the edge water tongue enters is deduced, that is, the time of edge water breakthrough in condensate gas reservoir.The calculation results show that the relative error of water breakthrough time considering retrograde condensate pollution is less than that without consideration, with a higher accuracy. The example error is less than 2%, which can be effectively applied to the development of edge water gas reservoir.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/73/e3sconf_acic2020_02009.pdf
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AT linxingyu predictionofwaterbreakthroughtimeinhorizontalwellsinedgewatercondensategasreservoirs
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