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Experimental Investigation of CO2-CH4 Displacement and Dispersion in Sand Pack for Enhanced Gas Recovery

机译:CO2-CH4位移和分散在砂包中的实验研究,提高气体回收

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Enhanced Gas Recovery by injecting CO2 is one of the efficient scenarios to accelerate gas production if the excessive mixing can be avoided in the process of CO2-CH4 displacement. A laboratory investigation was presented to describe the detailed CO2-CH4 displacement and analyze CO2 dispersion into CH4 in the sand pack for pressure of 10-14 MPa at 40 °C with the CO2 injection rate of 0.2, 0.3 and 0.4 ml/min. And the displacement process was scanned by an X-ray micro-CT scanner. The results of CT scan images were consistent with the breakthrough profile obtained from outlet gas composition analysis. The dispersion coefficient is in the range from 4.478 x 10~(-7) to 9.898 X 10~(-7)mm~2/s and it increase with interstitial velocity of CO2 and decrease with pressure. The dispersivity of BZ04 sand pack is calculated as 0.0054 m.
机译:通过注入CO2的增强的气体回收是如果在CO2-CH4位移过程中可以避免过量混合,则加速气体产生的有效场景之一。提出了实验室研究以描述详细的CO 2 -CH4位移,并在40℃下将CO 2分散在砂包装中的CH4中的CH4分析为10-14MPa的压力,CO 2注射速率为0.2,0.3和0.4ml / min。并且由X射线微型CT扫描仪扫描位移过程。 CT扫描图像的结果与从出口气体成分分析获得的突破轮廓一致。分散系数的范围为4.478×10〜(-7)至9.898×10〜(-7)mm〜2 / s,并且随着CO 2的间质速度而增加并随压力降低。 BZ04砂包的分散性计算为0.0054米。

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