Establishment of Mathematical Model and Sensitivity Analysis of PluggingCapacity of Multi-Component Foam Flooding

Chengli Zhang, Dezhi Liang, Hai-qing Cui, D. Yin, Guoliang Song
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引用次数: 2

Abstract

Based on mass conservation, foam total amount balance thought and foam properties characterization model, a foam flooding mathematical model with three-phase and five components is established and numerically solved, the ex- plicit is used to solve the saturation equation and the implicit is used to solve the pressure equation in this model. By fit- ting the results of foam plugging capacity experiments and numerical calculation, the correctness of the model is verified. On this basis, the conceptual model is established to simulate and evaluate the sensitivity of influencing parameters of foam flooding plugging ability. The results show that: the plugging ability of foam system increases with the increase of foaming agent concentration. When the concentration of foaming agent is more than 0.3%, the resistance coefficient tends to steady; when gas-liquid ratio is 2:1, the foam plugging ability is the strongest. The plugging ability of foam system in- creases with the increase of permeability showing good permeability selectivity. If the permeability in the reservoir is higher then the profile control capability will also be stronger.
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多组分泡沫驱堵塞能力数学模型的建立及敏感性分析
基于质量守恒、泡沫总量平衡思想和泡沫性质表征模型,建立了三相五组分泡沫驱油数学模型并进行了数值求解,该模型采用显式求解饱和方程,采用隐式求解压力方程。通过拟合泡沫封堵能力实验和数值计算结果,验证了模型的正确性。在此基础上,建立概念模型,模拟评价泡沫驱封堵能力影响参数的敏感性。结果表明:泡沫体系的封堵能力随着发泡剂浓度的增加而增强。发泡剂浓度大于0.3%时,阻力系数趋于稳定;当气液比为2:1时,泡沫封堵能力最强。泡沫体系的封堵能力随渗透率的增加而增加,表现出良好的渗透率选择性。储层渗透率越高,其调剖能力也越强。
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