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The inverse correlations between methane content and elastic parameters of coal-bed methane reservoirs

2013/06/24 by Xinping Chen, Xin-Ping Chen, Quanming Huo +5 · 19 citations
Chemistry · Earth and Planetary Sciences · Engineering · Mathematics · #Biot number #Chemistry #Coal #Coal Properties and Utilization #Computer science #Environmental science #Generalization #Geology #Geometry #Hydrocarbon exploration and reservoir analysis #Inverse #Inverse problem #Mathematical analysis #Mathematics #Mechanics #Methane #Offset (computer science) #Petroleum engineering #Physics #Rank (graph theory) #Seismic Imaging and Inversion Techniques #Soil science

paper · doi:10.1190/geo2012-0352.1

published in Geophysics 78(4), D237-D248 (Society of Exploration Geophysicists)

openalex publication_date 2013/06/24 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/26

Abstract

ABSTRACT We investigated three coal-bed methane (CBM) reservoirs in which there exist, when we are careful about data quality and reduce environmental variations, inverse correlations between methane content and the elastic properties of the coal beds. Such inverse correlations may exist in general in high- and medium-rank CBM reservoirs. There is evidence that supports the generalization of such inverse correlations and factors that distort them. These distorting factors may prevent identification of such inverse correlations in certain CBM prospects; however, they cannot negate the underlying inverse correlations. Such inverse correlations may play a role in CBM amplitude versus offset (AVO) similar to the role played by Gassmann-Biot theory (Gassmann, 1951; Biot, 1956, 1962) in AVO technology for conventional gas reservoirs. This may lay the first brick for a theoretical basis of CBM AVO.

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