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Laboratory Study on Polymers for Chemical Flooding in Carbonate Reservoirs

机译:碳酸盐储层中化学洪水聚合物的实验室研究

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As part of the screening process for chemical EOR, several polymers have been screened as co-injectants in a surfactantaided water flood scheme. Due to their higher viscosity, polymers improve sweep efficiency and reduce the permeability of rock matrix, therefore help to improve oil recovery. Aimed at a representative carbonate reservoir in the Middle East, a polymer screening study has been conducted with respect to polymer solubility and viscosity retention in high salinity brines, equivalent to our reservoir parameters. The polymers have to pass through a stringent screening process to meet the harsh conditions encountered in the reservoir: high temperature, high salinities and carbonate nature. Salinity effect was studied in a range of brines that included shallow formation water, produced water, and connate water. Among the polymers studied, six were found compatible and have been short-listed. Based on rheological measurements and flow curves, the concentrations of polymers have been determined to achieve the target viscosity under reservoir conditions. Long-term stability and adsorption tests were conducted to ensure the efficiency of the polymer exposed to reservoir conditions. Oil displacement tests with a selected polymer showed an increased oil recovery factor of 11% by polymer flooding and 18% by surfactant-polymer flooding. This study demonstrates the potential application of polymers under extremely harsh reservoir conditions and their promise to be good additives for chemical flooding.
机译:作为化学EOR筛选方法的一部分,已经在表面活性剂水分洪方案中被筛选为共注射剂的几种聚合物。由于其较高的粘度,聚合物可提高扫描效率并降低岩石基质的渗透性,从而有助于提高采油。针对中东的代表性碳酸盐储层,已经在高盐度盐水中进行了聚合物筛选研究,相当于我们的储层参数等同于高盐度溶解度和粘度保持。聚合物必须通过严格的筛选过程,以满足储层中遇到的恶劣条件:高温,高盐度和碳酸盐性质。在一系列盐水中研究了盐度效果,包括浅层水,生产的水和生成水。在研究的聚合物中,发现六种兼容,并已缩短列出。基于流变测量和流动曲线,已经确定了聚合物的浓度以在储层条件下实现目标粘度。进行长期稳定性和吸附试验,以确保暴露于储层条件的聚合物的效率。具有选定聚合物的油位移试验显示通过聚合物洪水增加11%的油回收率增加,18%通过表面活性剂 - 聚合物泛滥。本研究表明,聚合物在极其恶劣的储层条件下的潜在应用及其承诺是化学洪水的良好添加剂。

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