CBM Reservoir Rock Physics Model and Its Response Characteristic Study

The rock physics model of coalbed methane (CBM) reservoir is significant for the study of CBM content. However, because of the adsorption and dissociation of the CBM reservoir, it is difficult to establish models. In addition, the studies on rock physics modeling of the CBM reservoir are scarce. Thi...

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Main Authors: Yaping Huang, Mingdi Wei, Reza Malekian, Xiaopeng Zheng
Format: Article
Language:English
Published: IEEE 2017-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/7887673/
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spelling doaj-ef92337486b744b88e8feae23a7d0a432021-03-29T20:08:29ZengIEEEIEEE Access2169-35362017-01-0155837584310.1109/ACCESS.2017.26878827887673CBM Reservoir Rock Physics Model and Its Response Characteristic StudyYaping Huang0Mingdi Wei1Reza Malekian2https://orcid.org/0000-0002-2763-8085Xiaopeng Zheng3Key Laboratory of Coal Methane and Fire Control, China University of Mining and Technology, Ministry of Education, Xuzhou, ChinaSchool of Resources and Geosciences, China University of Mining and Technology, Xuzhou, ChinaDepartment of Electrical, Electronic and Computer Engineering, University of Pretoria, Pretoria, South AfricaSinopec Geophysical Research Institute, Nanjing, ChinaThe rock physics model of coalbed methane (CBM) reservoir is significant for the study of CBM content. However, because of the adsorption and dissociation of the CBM reservoir, it is difficult to establish models. In addition, the studies on rock physics modeling of the CBM reservoir are scarce. This paper proposes the basic modeling process. First, the coal rock minerals and methane in adsorbed state are used to calculate elastic parameters of coal rock matrix. Then, the differential equivalent medium model is used to get elastic parameters of the dry rock skeleton. The free methane is mixed with water, and finally the Gassmann equation is applied to obtain elastic parameters of the CBM reservoir model. The study on the CBM reservoir rock physics model's response characteristics has found that there is a sensitive negative correlation between CBM content and P-wave velocity and density. The higher CBM content goes with larger absolute values of intercept, gradient, and seismic amplitude, because their seismic attributes are more sensitive to higher CBM content, whereas the response characteristics are opposite with the lower CBM content. The relationship among the CBM content and absolute values of intercept, gradient, and seismic amplitude in the real data of Qinshui Basin is largely consistent with the response characteristics of the established rock physics model, indicating that the CBM reservoir rock physics model proposed in this paper has a certain feasibility, and the response characteristics of its intercept, gradient, and seismic amplitude are more sensitive to predicting CMB reservoirs.https://ieeexplore.ieee.org/document/7887673/CBM reservoirrock physicsinterceptgradientamplitude attributesensitive
collection DOAJ
language English
format Article
sources DOAJ
author Yaping Huang
Mingdi Wei
Reza Malekian
Xiaopeng Zheng
spellingShingle Yaping Huang
Mingdi Wei
Reza Malekian
Xiaopeng Zheng
CBM Reservoir Rock Physics Model and Its Response Characteristic Study
IEEE Access
CBM reservoir
rock physics
intercept
gradient
amplitude attribute
sensitive
author_facet Yaping Huang
Mingdi Wei
Reza Malekian
Xiaopeng Zheng
author_sort Yaping Huang
title CBM Reservoir Rock Physics Model and Its Response Characteristic Study
title_short CBM Reservoir Rock Physics Model and Its Response Characteristic Study
title_full CBM Reservoir Rock Physics Model and Its Response Characteristic Study
title_fullStr CBM Reservoir Rock Physics Model and Its Response Characteristic Study
title_full_unstemmed CBM Reservoir Rock Physics Model and Its Response Characteristic Study
title_sort cbm reservoir rock physics model and its response characteristic study
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2017-01-01
description The rock physics model of coalbed methane (CBM) reservoir is significant for the study of CBM content. However, because of the adsorption and dissociation of the CBM reservoir, it is difficult to establish models. In addition, the studies on rock physics modeling of the CBM reservoir are scarce. This paper proposes the basic modeling process. First, the coal rock minerals and methane in adsorbed state are used to calculate elastic parameters of coal rock matrix. Then, the differential equivalent medium model is used to get elastic parameters of the dry rock skeleton. The free methane is mixed with water, and finally the Gassmann equation is applied to obtain elastic parameters of the CBM reservoir model. The study on the CBM reservoir rock physics model's response characteristics has found that there is a sensitive negative correlation between CBM content and P-wave velocity and density. The higher CBM content goes with larger absolute values of intercept, gradient, and seismic amplitude, because their seismic attributes are more sensitive to higher CBM content, whereas the response characteristics are opposite with the lower CBM content. The relationship among the CBM content and absolute values of intercept, gradient, and seismic amplitude in the real data of Qinshui Basin is largely consistent with the response characteristics of the established rock physics model, indicating that the CBM reservoir rock physics model proposed in this paper has a certain feasibility, and the response characteristics of its intercept, gradient, and seismic amplitude are more sensitive to predicting CMB reservoirs.
topic CBM reservoir
rock physics
intercept
gradient
amplitude attribute
sensitive
url https://ieeexplore.ieee.org/document/7887673/
work_keys_str_mv AT yapinghuang cbmreservoirrockphysicsmodelanditsresponsecharacteristicstudy
AT mingdiwei cbmreservoirrockphysicsmodelanditsresponsecharacteristicstudy
AT rezamalekian cbmreservoirrockphysicsmodelanditsresponsecharacteristicstudy
AT xiaopengzheng cbmreservoirrockphysicsmodelanditsresponsecharacteristicstudy
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