Coalbed Methane Production System Simulation and Deliverability Forecasting: Coupled Surface Network/Wellbore/Reservoir Calculation
As an unconventional energy, coalbed methane (CBM) mainly exists in coal bed with adsorption, whose productivity is different from conventional gas reservoir. This paper explains the wellbore pressure drop, surface pipeline network simulation, and reservoir calculation model of CBM. A coupled surfac...
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Series: | International Journal of Chemical Engineering |
Online Access: | http://dx.doi.org/10.1155/2017/8267529 |
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doaj-5e5a16d144ae4540930dd46737d4b3ac2021-07-02T17:46:46ZengHindawi LimitedInternational Journal of Chemical Engineering1687-806X1687-80782017-01-01201710.1155/2017/82675298267529Coalbed Methane Production System Simulation and Deliverability Forecasting: Coupled Surface Network/Wellbore/Reservoir CalculationJun Zhou0Guangchuan Liang1Tao Deng2Shiwei Zhou3Jing Gong4Southwest Petroleum University, Chengdu 610500, ChinaSouthwest Petroleum University, Chengdu 610500, ChinaChina National Petroleum Corporation Guangzhou Petroleum Training Center, Guangzhou 510510, ChinaBranch of China Petrochemical Marketing Co. Ltd., Jiangxi Yichun Oil Company, Yichun 336000, ChinaChina University of Petroleum, Beijing 102249, ChinaAs an unconventional energy, coalbed methane (CBM) mainly exists in coal bed with adsorption, whose productivity is different from conventional gas reservoir. This paper explains the wellbore pressure drop, surface pipeline network simulation, and reservoir calculation model of CBM. A coupled surface/wellbore/reservoir calculation architecture was presented, to coordinate the gas production in each calculation period until the balance of surface/wellbore/reservoir. This coupled calculation method was applied to a CBM field for predicting production. The daily gas production increased year by year at the first time and then decreased gradually after several years, while the daily water production was reduced all the time with the successive decline of the formation pressure. The production of gas and water in each well is almost the same when the structure is a star. When system structure is a dendritic surface system, the daily gas production ranked highest at the well which is the nearest to the surface system collection point and lowest at the well which is the farthest to the surface system collection point. This coupled calculation method could be used to predict the water production, gas production, and formation pressure of a CBM field during a period of time.http://dx.doi.org/10.1155/2017/8267529 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jun Zhou Guangchuan Liang Tao Deng Shiwei Zhou Jing Gong |
spellingShingle |
Jun Zhou Guangchuan Liang Tao Deng Shiwei Zhou Jing Gong Coalbed Methane Production System Simulation and Deliverability Forecasting: Coupled Surface Network/Wellbore/Reservoir Calculation International Journal of Chemical Engineering |
author_facet |
Jun Zhou Guangchuan Liang Tao Deng Shiwei Zhou Jing Gong |
author_sort |
Jun Zhou |
title |
Coalbed Methane Production System Simulation and Deliverability Forecasting: Coupled Surface Network/Wellbore/Reservoir Calculation |
title_short |
Coalbed Methane Production System Simulation and Deliverability Forecasting: Coupled Surface Network/Wellbore/Reservoir Calculation |
title_full |
Coalbed Methane Production System Simulation and Deliverability Forecasting: Coupled Surface Network/Wellbore/Reservoir Calculation |
title_fullStr |
Coalbed Methane Production System Simulation and Deliverability Forecasting: Coupled Surface Network/Wellbore/Reservoir Calculation |
title_full_unstemmed |
Coalbed Methane Production System Simulation and Deliverability Forecasting: Coupled Surface Network/Wellbore/Reservoir Calculation |
title_sort |
coalbed methane production system simulation and deliverability forecasting: coupled surface network/wellbore/reservoir calculation |
publisher |
Hindawi Limited |
series |
International Journal of Chemical Engineering |
issn |
1687-806X 1687-8078 |
publishDate |
2017-01-01 |
description |
As an unconventional energy, coalbed methane (CBM) mainly exists in coal bed with adsorption, whose productivity is different from conventional gas reservoir. This paper explains the wellbore pressure drop, surface pipeline network simulation, and reservoir calculation model of CBM. A coupled surface/wellbore/reservoir calculation architecture was presented, to coordinate the gas production in each calculation period until the balance of surface/wellbore/reservoir. This coupled calculation method was applied to a CBM field for predicting production. The daily gas production increased year by year at the first time and then decreased gradually after several years, while the daily water production was reduced all the time with the successive decline of the formation pressure. The production of gas and water in each well is almost the same when the structure is a star. When system structure is a dendritic surface system, the daily gas production ranked highest at the well which is the nearest to the surface system collection point and lowest at the well which is the farthest to the surface system collection point. This coupled calculation method could be used to predict the water production, gas production, and formation pressure of a CBM field during a period of time. |
url |
http://dx.doi.org/10.1155/2017/8267529 |
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