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Experimental study on porosity and permeability of anthracite coal under different stresses

机译:不同应力下无烟煤孔隙度和渗透率的试验研究

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摘要

Coal porosity and permeability are key factors influencing coal-bed methane well production. In order to investigate the permeability behavior during anthracite coal seam methane production, the porosity and permeability of anthracite coal sample from No 3 coal seam in Southern Qinshui Basin of China in net confining stress were measured in laboratory. The correlations between porosity, permeability and effective stress were analyzed. Permeability damage rate, stress sensitivity coefficient and pore compressibility factor were proposed to evaluate the effective stress-dependent sensitivity characteristics of anthracite coal. It turns out that, both porosity and permeability of coal sample decrease exponentially with the increase of effective stress If the effective stress is less than 5 MPa or 6 MPa, stress sensitivity coefficient of coal reservoir changed greatly, and the stress sensitivity coefficient decreases rapidly with effective stress increased. The permeability damage rate increases rapidly with increasing effective stress, the stress sensitivity of coal reservoir enhanced; while in the effective stress is greater than 5 MPa or 6 MPa, the stress sensitivity coefficient of the coal reservoir decreases as effective stress increases slowly, and there is fluctuation, the stress sensitivity of coal reservoir is reduced; while permeability damage rate with the increase of effective stress increased more slowly. With the increase of moisture content and temperature, the permeability damage rate of coal reservoir and stress sensitive coefficient increase, and the stress sensitivity of coal reservoir enhanced. (C) 2015 Elsevier BY. All rights reserved,
机译:煤的孔隙度和渗透率是影响煤层气井产量的关键因素。为了研究无烟煤层气生产过程中的渗透性行为,在实验室内测量了沁水盆地南部沁水盆地三号煤层无烟煤样品的孔隙度和渗透率。分析了孔隙度,渗透率和有效应力之间的关系。提出了渗透率破坏率,应力敏感性系数和孔隙可压缩系数,以评价无烟煤有效的应力依赖性敏感性特征。结果表明,随着有效应力的增加,煤样的孔隙度和渗透率均呈指数下降。如果有效应力小于5 MPa或6 MPa,则煤储层的应力敏感性系数发生较大变化,应力敏感性系数随温度的升高而迅速降低。有效压力增加。渗透率破坏率随有效应力的增加而迅速增加,提高了煤层的应力敏感性。当有效应力大于5 MPa或6 MPa时,随着有效应力的缓慢增加,储层的应力敏感性系数减小,且存在波动时,储层的应力敏感性降低。渗透率破坏率随着有效应力的增加而增加得更慢。随着含水量和温度的升高,储层的渗透率破坏率和应力敏感性系数增大,储层的应力敏感性增强。 (C)2015 Elsevier BY。版权所有,

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