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Necessity and feasibility of improving the residual resistance factor of polymer flooding in heavy oil reservoirs

机译:提高稠油油藏聚合物驱剩余阻力因子的必要性和可行性

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The efficiency of water flooding in heavy oil reservoirs would be improved by increasing the viscosity of the displacing phase, but the sweep efficiency is not of significance due to the low mobility of the vicious oil. On the basis of mobility control theory, increasing the residual resistance factor not only reduces the water-oil mobility ratio but also decreases the requirement for viscosity enhancement of the polymer solution. The residual resistance factor caused by hydrophobic associating polymer solution is higher than that caused by polyacrylamide solution in brine containing high concentrations of calcium and magnesium ions. The results of numerical simulations show that the polymer flooding efficiency improved by increasing the residual resistance factor is far better than that by only increasing solution viscosity. The recovery factor of heavy oil reservoirs (70 mPa·s) can be enhanced by hydrophobic associating polymer solution of high residual resistance factor (more than 3) and high effective viscosity (24 mPa·s). Therefore, increasing the residual resistance factor of the polymer solution not only decreases the requirement for the viscosity of polymer solution injected into heavy oil reservoirs but also is favorable to enhanced oil recovery during polymer flooding.
机译:通过增加驱替相的粘度可以提高稠油油藏注水效率,但是由于恶臭油的低迁移率,扫油效率并不重要。根据迁移率控制理论,增加残余电阻系数不仅降低了水油迁移率,而且降低了提高聚合物溶液粘度的要求。由疏水缔合聚合物溶液引起的残余电阻系数高于由聚丙烯酰胺溶液在含有高浓度钙和镁离子的盐水中引起的残余电阻系数。数值模拟结果表明,通过增加残余电阻系数所提高的聚合物驱效率远远好于仅通过增加溶液粘度来提高驱油效率。通过高残留阻力系数(大于3)和有效粘度(24 mPa·s)的疏水缔合聚合物溶液可以提高稠油油藏的采收率(70 mPa·s)。因此,增加聚合物溶液的残余电阻因数,不仅降低了注入稠油油藏的聚合物溶液的粘度要求,而且有利于提高聚合物驱期间的采油率。

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