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首页> 外文期刊>Journal of Petroleum Science & Engineering >On the effect of salinity and nano-particles on polymer flooding in a heterogeneous porous media: Experimental and modeling approaches
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On the effect of salinity and nano-particles on polymer flooding in a heterogeneous porous media: Experimental and modeling approaches

机译:关于盐度和纳米粒子对异质多孔介质中聚合物洪水的影响:实验和建模方法

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In this study, polymer flooding process was simulated using COMSOL Multiphysics (R) modeling software. Navier-Stokes and phase field equations were solved simultaneously using finite element approach. Effects of salinity, viscosity, and nano-particles were studied on displacement efficiency of oil sample in the heterogeneous porous media. Modeling results for oil recovery factor and breakthrough time were obtained and compared to experimental outputs of another study. Results indicated that there exists a proper accommodation between the results. Errors ranged from 3% to 7% for oil recovery factor and 0.5%-0.9% for the breakthrough time in various injection scenarios. Using predefined structure of the under test micromodel, star-like meshes were developed in this software for the first time. This unstructured mesh is more likely to the pore structures of the sandstone reservoirs. To increase the validity of the results, a boundary layer was designated in the fluid flow path and mesh generation was performed manually in a complicated pore space instead of automatic mesh generation. Experimental and modeling results for the residual oil saturation as a function of dimensionless time were compared. Mesh dependency studies were performed to obtain the best number of mesh elements in which the most accurate results were obtained in the minimum required time. Finally, sensitivity analysis studies were performed as a function of injection rate, mobility ratio, and viscosity and the operating conditions were analyzed in terms of capillary number. All the polymer injection scenarios led to reasonable range for this parameter which verifies the accuracy of the selected operating parameters and the modeling approach.
机译:在本研究中,使用COMSOL Multiphysics(R)建模软件模拟了聚合物泛洪过程。使用有限元方法同时解决Navier-Stokes和相位场方程。研究了盐度,粘度和纳米颗粒的影响,对异构多孔介质中的油样的位移效率进行了研究。获得了采油系数和突破时间的建模结果,并与另一研究的实验产出相比。结果表明,结果之间存在适当的住宿。误差范围为700%至7%,用于突破场景中的突破时间0.5%-0.9%。使用伪义的下义结构的伪义结构,首次在该软件中开发了星状网格。这种非结构化网格更可能是砂岩储层的孔结构。为了提高结果的有效性,在流体流动路径中指定边界层,并且在复杂的孔隙空间中手动进行网格产生而不是自动网格产生。比较了与无量纲时间函数的残余油饱和度的实验和建模结果。进行网格依赖性研究以获得最佳数量的网格元素,其中在最小所需时间中获得最准确的结果。最后,作为注射速率,迁移率和粘度的函数进行敏感性分析研究,并且在毛细管数方面分析了操作条件。所有聚合物喷射方案都导致该参数的合理范围,可验证所选操作参数和建模方法的准确性。

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