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首页> 外文期刊>Journal of Petroleum Science & Engineering >Characteristic analysis and fractal model of the gas-water relative permeability of coal under different confining pressures
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Characteristic analysis and fractal model of the gas-water relative permeability of coal under different confining pressures

机译:不同施加压力下煤气水相对渗透性的特征分析与分形模型

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摘要

AbstractGas-water relative permeability is crucial to the evaluation of coal reservoirs by numerical simulation and to the dynamic prediction of flow rates. Gas-water relative permeability experiments using the unsteady-state method determined that the gas permeability, liquid permeability and gas permeability under irreducible water conditions had a negative exponential relationship with the increase of the confining pressure. The gas-water relative permeability curves had significant differences under different confining pressures. With the increase of the confining pressure, the relative permeability of the water obviously decreased, whereas the relative permeability of the gas showed an increasing trend to some degree and the relative permeability ratiokrg/krwincreased when the water saturation was less than 80%. These results indicate that an increase of confining pressure has less influence on gas relative permeability than it has on water relative permeability. Based on the experimental data from mercury intrusion porosimetry and low-temperature nitrogen adsorption, the fractal dimension was obtained after performing a compressibility correction of the mercury intrusion volume. The small fractal dimension found indicates that the pore-fracture system of coal has a strong self-similarity. An improved fractal model was proposed to fit the gas-water permeability under different confining pressures, and the modeling results were well correlated with the experimental data of the unsteady-state method.Highlights?The gas-water permeability under different confining pressures was analyzed.?The fractal dimension was obtained after performing a compressibility correction.?An improved fractal model was proposed to fit the gas-water relative permeability.]]>
机译:<![CDATA [ 抽象 气水相对渗透对于通过数值模拟和流量的动态预测来评估煤储层至关重要费率。使用非稳定状态方法的气体水相对渗透性实验确定了在不可约水条件下的透气性,液态渗透性和透气性与狭窄压力的增加具有负指数关系。气体水相对渗透率曲线在不同的限制压力下具有显着差异。随着狭窄压力的增加,水的相对渗透性明显减少,而气体的相对渗透性显示出一定程度的趋势和相对渗透率 k rg / k < CE:斜体> RW 当水饱和度小于80%时增加。这些结果表明,增加压力的增加对气体相对渗透性的影响较小,而不是水相对渗透性。基于来自汞侵入孔隙瘤率和低温氮吸附的实验数据,在进行汞侵入体积的可压缩性校正后获得分形尺寸。发现的小分形尺寸表明煤的孔隙骨折系统具有强烈的自相似性。提出了一种改进的分形模型,以根据不同的限制压力来拟合气体渗透性,并且建模结果与非稳态方法的实验数据良好相关。 亮点 分析了不同限制压力下的气体渗透率。 < / ce:列表 - 项目> 分形维数是分形维数在执行压缩性校正后获得。 提出了一种改进的分形模型,以适应天然气 - 水相对渗透性。 ]]>

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