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Experimental Study on Reducing CO2–Oil Minimum Miscibility Pressure with Hydrocarbon Agents

机译:用碳氢化合物降低二氧化碳油最小混溶性压力的实验研究

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摘要

CO2 flooding is an important method for improving oil recovery for reservoirs with low permeability. Even though CO2 could be miscible with oil in regions nearby injection wells, the miscibility could be lost in deep reservoirs because of low pressure and the dispersion effect. Reducing the CO2−oil miscibility pressure can enlarge the miscible zone, particularly when the reservoir pressure is less than the needed minimum miscible pressure (MMP). Furthermore, adding intermediate hydrocarbons in the CO2−oil system can also lower the interfacial tension (IFT). In this study, we used dead crude oil from the H Block in the X oilfield to study the IFT and the MMP changes with different hydrocarbon agents. The hydrocarbon agents, including alkanes, alcohols, oil-soluble surfactants, and petroleum ethers, were mixed with the crude oil samples from the H Block, and their performances on reducing CO2−oil IFT and CO2−oil MMP were determined. Experimental results show that the CO2−oil MMP could be reduced by 6.19 MPa or 12.17% with petroleum ether in the boiling range of 30−60 °C. The effects of mass concentration of hydrocarbon agents on CO2−oil IFT and crude oil viscosity indicate that the petroleum ether in the boiling range of 30−60 °C with a mass concentration of 0.5% would be the best hydrocarbon agent for implementing CO2 miscible flooding in the H Block.
机译:二氧化碳洪水是改善具有低渗透性储层储存的重要方法。尽管在注射孔附近的区域中的油可以混溶CO 2,但由于低压和分散效应,在深层储层中可能会丢失混溶性。减少CO2-油混溶性压力可以扩大可混溶区域,特别是当储层压力小于所需的最小混溶性压力(MMP)时。此外,在CO2-油系统中加入中间烃也可以降低界面张力(IFT)。在这项研究中,我们使用来自X油田的H块的死原油来研究IFT和MMP的不同烃代理。将烃类试剂包括烷烃,醇,油溶性表面活性剂和石油醚与来自H嵌段的原油样品混合,并测定它们在还原CO 2-油IFT和CO2-油MMP上的性能。实验结果表明,在沸点30-60℃的石油醚中,二氧化碳油MMP可以减少6.19MPa或12.17%。烃类药物对二氧化碳IFT和原油粘度的影响表明,沸程在30-60℃的沸腾范围内的石油醚为0.5%,是实施二氧化碳混溶性洪水的最佳烃代理剂在h块。

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