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Experimental Study of the Feasibility of Air Flooding in an Ultra-Low Permeability Reservoir

机译:超低渗透油藏注气可行性的实验研究

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The development effect of water flooding in an ultra-low permeability reservoir is poor due to its poor physical properties and high shale content, so an experimental study of air flooding which helps to complement energy production was carried out. Based on the Accelerating Rate Calorimeter experimental results, the crude oil of N block in L oilfield can undergo low-temperature oxidation reactions, which are the basic condition for air flooding. Three groups of experimental natural cylinder cores designed for oil displacement, water flooding and air flooding were used respectively, and the relationship between differential pressure, oil recovery, injection capacity with injection volume was investigated. It is observed that the recovery efficiency increased 2.58%, the injection-production pressure difference dropped 60% and the injection capability increased 60% in the experiment of shifting air flooding after water flooding to 75% moisture content, compared with water flooding alone. It has been shown in the results that the recovery efficiency improved sharply more than water flooding, the effect of depressurization and augmented injection was obvious, and the air displacement was thus validated. We suggest that other science and technology workers should perform further tests and verify this result through numerical simulation.
机译:由于超低渗透储层的物性差,页岩含量高,对水驱的开发效果较差,因此进行了空气驱替补充能量生产的实验研究。根据加速量热仪的实验结果,L油田N区块原油会发生低温氧化反应,这是驱油的基本条件。分别采用了三组分别用于驱油,注水和注气的实验天然缸芯,研究了压差,采油量,注入量与注入量之间的关系。与单独注水相比,在注水后将空气驱入含水量达到75%的实验中,可以发现采收率提高了2.58%,注入生产压力差降低了60%,注入能力提高了60%。结果表明,与水驱相比,采收率明显提高,降压和增注效果明显,从而验证了驱气效果。我们建议其他科学技术工作者应进行进一步的测试,并通过数值模拟验证此结果。

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