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Pore Level Investigation of Oil Depressurisation in Pores with Different Wettbility – Critical Gas Saturation

机译:不同润湿性的孔隙中油减压的孔隙水平研究-临界气体饱和度

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We have conducted a series of flow visualisation tests at the pore level using high-pressure glass micromodel to identify the key features of the depressurisation process. A series of experiments were conducted to investigate the effect of fluid properties, depletion rate, saturation conditions, wettability and saturation history on the depressurisation process. This paper presents the experimental results of this research on gas evolution, critical gas saturation and hydrocarbon movement. Our observation highlighted the effect of gravity on gas movement. Fluids properties affected the mobilisation point of the gas bubbles. A very low value of critical gas saturation was measured for a low oil/gas interfacial tension. Critical gas saturation and subsequent oil production were strongly affected by the critical value of supersaturation and the number of bubbles that were formed during the depressurisation. The results showed that the oil production was affected by the oil/water wettability; oil production was higher in the mixed-wet system compared to that in the oil-wet one. To study the possibility of improving oil recovery by pressurisation and second depressurisation cycle, a few tests were continued at high gas saturation and the effect of pressurisation rate and water presence on the second depressurisation were studied.
机译:我们使用高压玻璃微模型在孔隙水平进行了一系列流动可视化测试,以确定减压过程的关键特征。进行了一系列实验,以研究流体性质,消耗速率,饱和条件,润湿性和饱和历史对减压过程的影响。本文介绍了该研究在气体释放,临界气体饱和度和碳氢化合物运移方面的实验结果。我们的观察突出了重力对气体运动的影响。流体性质影响气泡的迁移点。对于低油/气界面张力,测量到的临界气体饱和度值非常低。临界气体饱和度和随后的采油量受过饱和度的临界值和在减压过程中形成的气泡数的强烈影响。结果表明,产油量受油水润湿性的影响。混合湿系统中的石油产量要高于油湿系统中的石油产量。为了研究通过加压和二次减压循环改善采油率的可能性,在高气体饱和度下继续进行了一些测试,并研究了加压速率和水的存在对二次减压的影响。

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