Transient pressure and productivity analysis in carbonate geothermal reservoirs with changing external boundary flux
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Published:2017
Issue:suppl. 1
Volume:21
Page:177-184
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ISSN:0354-9836
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Container-title:Thermal Science
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language:en
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Short-container-title:THERM SCI
Author:
Wang Dongying1,
Yao Jun1,
Cai Mingyu1,
Liu Piyang1
Affiliation:
1. University of Petroleum, School of Petroleum Engineering in China, Qingdao, China
Abstract
In this paper, a triple-medium flow model for carbonate geothermal reservoirs
with an exponential external boundary ?ux is established. The pressure
solution under constant production conditions in Laplace space is solved. The
geothermal wellbore pressure change considering wellbore storage and skin
factor is obtained by Stehfest numerical inversion. The well test
interpretation charts and Fetkovich production decline chart for carbonate
geothermal reservoirs are proposed for the first time. The proposed Fetkovich
production decline curves are applied to analyze the production decline
behavior. The results indicate that in carbonate geothermal reservoirs with
exponential external boundary ?ux, the pressure derivative curve contains a
triple dip, which represents the interporosity flow between the vugs or
matrix and fracture system and the invading flow of the external boundary
?ux. The interporosity flow of carbonate geothermal reservoirs and changing
external boundary flux can both slow down the extent of production decline
and the same variation tendency is observed in the Fetkovich production
decline curve.
Publisher
National Library of Serbia
Subject
Renewable Energy, Sustainability and the Environment
Cited by
1 articles.
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