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A radial differential pressure decay method with micro-plug samples for determining the apparent permeability of shale matrix

机译:具有微塞样品的径向差压衰减方法,用于确定页岩基质的表观渗透性

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We propose a radial differential pressure decay (RDPD) method to measure the apparent permeability in shale matrix. The experimental design extends the upper limit of pressure in conventional methods. The experimental error caused by the dispersiveness of sample size and the irregularity of particle shape is reduced by utilizing precisely prepared micro-plug samples with highly uniform diameters, and the reliability of the result is improved substantially. The late-time approximate solution for cylindrical samples based on the experimental configuration is presented for data interpretation and verified with the numerical simulation. The experiments based on shale matrix samples are demonstrated. The results reveal that the RDPD method can capture a differential pressure decay curve precisely, which can be closely fitted through the late-time solution. It also has great potential for various tight porous media. This method sets the stage for the accurate investigation of gas transport mechanisms in tight porous media in future work.
机译:我们提出了一种径向差压衰减(RDPD)方法来测量页岩基质的表观渗透性。实验设计在常规方法中延伸了压力的上限。通过利用具有高度均匀直径的精确制备的微插头样品,通过精确制备的微插头样品减少了由样品大小的分散性和颗粒形状的不规则性引起的实验误差,并且基本上改善了结果的可靠性。基于实验配置的圆柱形样品的晚期近似解,用于数据解释,并用数值模拟验证。证明了基于页岩基质样品的实验。结果表明,RDPD方法可以精确地捕获压差衰减曲线,这可以通过后期解决方案密切合身。它对各种紧密多孔介质也具有很大的潜力。该方法设定了在未来的工作中紧密多孔介质中的气体运输机制准确调查的阶段。

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