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Experimental Study and Mechanism Analysis of the Effect of Oil Viscosity and Asphaltene on Foamy Oil

机译:油粘度和沥青质对泡沫油影响的实验研究及机理分析

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Foamy oil is considered an important reason for the anomalous performance in depletion development for some heavy oil reservoirs, but its influence factors remain to be fully investigated. In order to determine the effect of oil viscosity and asphaltene on foamy oil, ten oil samples including two types (deasphalted oil and asphaltenic oil) and five viscosities were used in the work. On this basis, depletion experiments were conducted in a sandpack and microscopic visualization model. Then, viscoelastic moduli of the oil–gas interface were measured to analyze the mechanisms of viscosity and asphaltene of foamy oil from the perspective of interfacial viscoelasticity. Results show that, with the decrease of the oil viscosity, the foamy oil performance in depletion development worsened, including a rapider decline in average pressure, earlier appearance of gas channeling, shorter period of foamy oil, and lower contribution of foamy oil to recovery. Asphaltene had an influence on foamy oil only in the viscosity range between 870 mPa?s and 2270 mPa?s for this study. The effect of viscosity and asphaltene on foamy oil can be explained by the viscoelasticity of bubble film. With the increase of oil viscosity, the interfacial viscous modulus increases significantly, indicating the bubble film becomes stronger and more rigid. Asphaltene, like armor on the bubble film, can improve the viscoelastic modulus, especially at lower viscosity. This can inhibit the coalescence of micro-bubbles and increase the possibility of splitting. This work identifies the effects of oil viscosity and asphaltene on foamy oil systematically and provides theoretical support for foamy oil production.
机译:泡沫油被认为是某些稠油油藏枯竭发展异常表现的重要原因,但其影响因素仍有待充分研究。为了确定油的粘度和沥青质对泡沫油的影响,工作中使用了十种油样品,包括两种类型(脱沥青油和沥青质油)和五种粘度。在此基础上,在沙袋和微观可视化模型中进行了耗竭实验。然后,从界面粘弹性的角度,测量了油气界面的粘弹性模量,以分析泡沫油的粘度和沥青质的机理。结果表明,随着油黏度的降低,泡沫油在耗竭过程中的性能恶化,包括平均压力下降较快,气窜出现较早,泡沫油作用时间缩短以及泡沫油对采收率的贡献较低。在本研究中,沥青质仅在870 mPa?s和2270 mPa?s的粘度范围内对泡沫油有影响。粘度和沥青质对泡沫油的影响可以用气泡膜的粘弹性来解释。随着油黏度的增加,界面黏性模量显着增加,表明气泡膜变得更坚固,更坚硬。像气泡膜上的铠甲一样,沥青质可以改善粘弹性模量,尤其是在较低粘度下。这可以抑制微气泡的聚结并增加分裂的可能性。这项工作系统地确定了油的粘度和沥青质对泡沫油的影响,并为泡沫油的生产提供了理论支持。

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