Distribution and geological controls on gas-bearing section of coal measure gases in Qinshui Basin
HOU Xiaowei
ZHANG Jinming
ZHU Yanming
ZHOU Guanqun
CHEN Luwang
WANG Yingjin
QU Xiaorong
Abstract:To study the characteristics of coupled accumulation and determine the geological control effects on coal measures gases(CMGs),coal measures of the Carboniferous-Permian Taiyuan and Shanxi formations at Qinshui Basin were selected as the target forma-tions.Various methods including field data collection,field/lab measurements,and theoretical analyses were applied to described the spa-tial superposition of CMG reservoirs,quantitatively determine the multi-scale pore system,identify the spatial development pattern of CMGs gas-bearing section,and clarify the types of CMGs coupled accumulation and geological controls.Results show that coal measures deposited at the unique marine-terrigenous depositional environment was characterized by lithological diversity and cyclic superposition which was served as the potential basics for coupled accumulation and co-exploration/development of CMGs.The abundance of the organ-ic matter gradually increased from the"inorganic reservoir"to"organic reservoir",forming a continuous rock sequence without a natural boundary in target coal measures.Gas-bearing sections was characterized by a vertically intermittent distribution and the dominant coupled accumulation assemblages can be subdivided into:shale gas dominated coupled accumulation type,CBM dominated coupled accumula-tion type,and multiple CMGs coupled accumulation type.Obviously,the effective gas-bearing sections need the appropriate combination of source,reservoir and cap.Coal reservoirs directly controlled the distribution of effective gas-bearing section.Reservoir burial condi-tions restricted the possibility of an effective gas-bearing section.Moreover,coals were believed to be more favorable for independent coalbed methane accumulation,whereas shale gas and sandstone gas required extremely strict geological,spatial and temporal conditions.Additionally,both organic-inorganic fabric and physical characteristics limited the potential of effective gas-bearing sections.Inspired by the findings of this study,further studies on the coupled accumulation mechanism and the co-exploration evaluation system of CMGs should be continuously conducted.
Keywords:coal measure gasesgas-bearing sectiongas co-existing combinationgeological controlsspatiotemporal condition
Publication Date:2023-12-30
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:11( 141-151 )
