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Effects of gas sorption-induced swelling/shrinkage on the cleat compressibility of coal under different bedding directions

机译:不同层理方向下瓦斯吸附引起的膨胀/收缩对煤层理压缩性的影响

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摘要

The cleat compressibility of coal is a key parameter that is extensively used in modeling the coal reservoir permeability for Coal Bed Methane (CBM) recovery. Cleat compressibility is often determined from the permeability measurement made at different confining pressures but with a constant pore pressure. Hence, this parameter ignores the sorption strain effects on the cleat compressibility. By using the transient pulse decay (TPD) technique, this study presents the results from a laboratory characterization program using coal core drilled from different bedding directions to estimate gas permeability and coal cleat compressibility under different pore pressures while maintaining effective stress constant. Cleat compressibility was determined from permeability and sorption strain measurements that are made at different pore pressures under an effective stress constant. Results show that the cleat compressibility of coal increases slightly with the increase of pore pressure. Moreover, the cleat compressibility of Sample P (representing the face cleats in coal) is larger than that of Sample C (representing the butt cleats in coal). This result suggests that cleat compressibility should not be regarded as constant in the modeling of the CBM recovery. Furthermore, the compressibility of face cleats is considerably sensitive to the sorption-induced swelling/shrinkage and offers significant effects on the coal permeability.
机译:煤的割理可压缩性是一个关键参数,广泛用于模拟煤层气(CBM)采收率的煤储层渗透率。防滑层的可压缩性通常由在不同围压下但孔隙压力恒定的渗透率测量确定。因此,该参数忽略了吸附应变对防滑钉可压缩性的影响。通过使用瞬态脉冲衰减(TPD)技术,本研究提供了一个实验室表征程序的结果,该程序使用了从不同顺层方向钻出的煤芯,以估算在不同孔隙压力下的气体渗透率和煤夹板的可压缩性,同时保持有效应力恒定。根据在有效应力常数下,在不同孔隙压力下进行的渗透率和吸附应变测量值确定防滑钉的可压缩性。结果表明,煤的割理可压缩性随孔隙压力的增加而略有增加。而且,样品P的防滑钉可压缩性(代表煤中的正面割理)大于样品C的防滑钉可压缩性(代表煤中的对接割理)。该结果表明,在煤层气采收率的模拟中,割理的可压缩性不应视为恒定的。此外,面夹板的可压缩性对吸附引起的膨胀/收缩相当敏感,并对煤的渗透性具有显着影响。

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