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Mechanism of Structural Damage in Low Permeability Coal Material of Coalbed Methane Reservoir under Cyclic Cold Loading

机译:循环冷载下煤层气储层低渗透煤材料结构损伤机制

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摘要

The pore and fracture structure of coal is the main factor that affects the storage and seepage capacity of coalbed methane. The damage of coal structure can improve the gas permeability of coalbed methane. A coal sample with a drilled hole was kept inside of a custom-designed device to supply confining pressure to the coal sample. Liquid nitrogen was injected into the drilled hole of the coal sample to apply cyclic cold loading. Confining pressures varying from 0~7 MPa to the coal sample were applied to explore the relationship between the structural damage and confining pressure. The structural damage rules of coal samples under different confining pressure were revealed. The results showed that: (1) The structural damage degree of the coal sample increases with the increase of confining pressure; (2) The coal sample was broken after three cycles of cold loading under 7 MPa confining pressure; (3) Without confining pressure, the coal sample is more likely to be damaged or even destroyed by cold liquid nitrogen. (4) The fracture extends along the stratification direction of coal samples, which is significant for coal samples with original fractures, but not obvious for the coal sample without fracture. The research results provide a new method and theoretical basis for permeability improvement of the coal seam.
机译:煤的孔隙和骨折结构是影响煤层甲烷储存和渗流能力的主要因素。煤炭结构的损坏可以提高煤层气的煤气渗透性。具有钻孔的煤样品在定制设计的装置内部保持在内部,以将限制压力供应到煤样。将液氮注入煤样的钻孔中以施加循环冷负载。应用从0〜7 MPa到煤样的限制压力被应用于探索结构损伤与限制压力之间的关系。揭示了不同限制压力下煤样的结构损伤规则。结果表明:(1)煤样的结构损伤程度随着限制压力的增加而增加; (2)在7 MPa限制压力下三个冷轧循环后,煤样品破裂; (3)没有限制压力,煤样更可能被冷液氮损坏甚至破坏。 (4)骨折沿煤样的分层方向延伸,这对于具有原始骨折的煤样而具有重要意义,但煤样而不明显没有骨折。研究结果为煤层的渗透性改进提供了一种新的方法和理论基础。

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