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The division and geologic controlling factors of a vertical superimposed coalbed methane system in the northern Gujiao blocks, China

机译:古交北段垂直叠置煤层气系统的划分及地质控制因素

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The Gujiao blocks are abundant in coalbed methane (CBM) resources. The reservoir pressure and pressure gradient in this area vary different for different mine fields. With increasing burial depth, the reservoir pressure increases. The reservoir pressure gradient ranges from 0.41 to 0.95 MPa/100 m; therefore, the reservoir can be classified as an under-pressurized reservoir. The southern region of the study area is a groundwater retention area, whereas the northern region is a runoff area. The gas content gradually increases from north to south. Taking the Miaogou limestone (L-1) and Xiedao limestone (L-4) as the boundary, three separate gas-bearing units can be divided vertically. The sequence stratigraphy structure is closely related to the quality of the CBM systems. The transgressive system formation provides a good sealing barrier that can be vertically divided into three CBM systems. In controlling the coal reservoir and the tectonic and hydrology conditions, components of the CBM system can communicate with each other in fracture development areas, which are suited for multi-layer drainage. However, we must design a method of development according to the law of diminishing fluid pressure of different CBM systems. (C) 2015 Elsevier B.V. All rights reserved.
机译:古交区块富含煤层气(CBM)资源。对于不同的矿场,该区域中的储层压力和压力梯度会有所不同。随着埋藏深度的增加,储层压力增加。储层压力梯度范围为0.41至0.95 MPa / 100 m;因此,该储层可以归为低压储层。研究区的南部是地下水滞留区,北部是径流区。气体含量从北向南逐渐增加。以庙沟石灰岩(L-1)和谢岛石灰岩(L-4)为界,可以垂直划分三个独立的含气单元。层序地层结构与煤层气系统的质量密切相关。海侵系统的形成提供了良好的密封屏障,可以将其垂直分为三个CBM系统。在控制煤储层和构造水文条件时,煤层气系统各组成部分可以在裂缝发育区域相互连通,这适合多层排水。但是,我们必须根据不同煤层气系统的流体压力递减规律设计一种开发方法。 (C)2015 Elsevier B.V.保留所有权利。

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