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Low-Salinity Polymer Flooding: Improving Polymer Flooding Technical Feasibility and Economics by Using Low-Salinity Make-up Brine

机译:低盐度聚合物洪水:使用低盐度化妆盐水改善聚合物洪水的技术可行性和经济性

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Polymer flooding is a mature EOR technique, which is successfully applied in both sandstone and carbonate reservoirs. In ongoing polymer projects, make-up brine is either formation water, sea water or any available water sources like deep or shallow aquifers. In this paper we focus on the use of low salinity water as the make-up brine. The objectives of combining low salinity flooding (LSF) with polymer flooding are three-fold: 1. Using low salinity brine reduces the amount of polymer required to obtain the target viscosity, which may lead to significant cost reduction. 2. Combining the benefit of low salinity flooding with polymer flooding leads to higher oil recovery over conventional polymer flooding. 3. Enhancing the elasticity of polymers by using low salinity brine which may lead to reduced Sorw and increased oil recovery. In addition to the objectives mentioned above, the use of a low-salinity make-up brine can give other benefits, such as better polymer stability (especially at high temperatures), lower sensitivity to polymer shear degradation, lower polymer adsorption and lower scaling and souring tendency. The paper will present 1-Experimental procedures for investigating the potential benefits of low salinity polymer on both the required polymer concentration and the oil recovery. 2-Experimental results for several field cases 3-De-risking activities that were undertaken to mitigate any potential negative impact of using low salinity polymer, in the areas of clay swelling, polymer shear sensitivity, mixing and adsorption. The paper concludes that low-salinity polymer flooding can significantly improve existing and anticipated polymer flooding projects by reducing polymer volumes and/or increasing oil recovery. Low-salinity polymer flooding provides opportunities to apply polymer flooding in high-salinity and high-temperature reservoirs, for which polymer flooding with produced or formation water would be technically unfeasible or uneconomic.
机译:聚合物洪水是一种成熟的EOR技术,成功地应用于砂岩和碳酸盐储层。在持续的聚合物项目中,化妆盐水是地层水,海水或任何可用的水源,如深或浅含水层。在本文中,我们专注于使用低盐水作为化妆盐水。将低盐度洪水(LSF)与聚合物泛滥结合的目标是三倍:1。使用低盐度盐水减少了获得目标粘度所需的聚合物的量,这可能导致显着降低成本。 2.将低盐度洪水与聚合物洪水相结合,导致常规聚合物洪水的储蓄较高。 3.通过使用低盐度盐水增强聚合物的弹性,这可能导致索道减少和增加的储存。除了上述目的外,使用低盐度化妆盐水可提供其他益处,例如更好的聚合物稳定性(特别是在高温下),对聚合物剪切降解的敏感性降低,低聚物吸附和更低的缩放倾向。本文将提出1实验步骤,用于研究低盐度聚合物对所需的聚合物浓度和油回收的潜在益处。 2实验结果对于若干现场案例的3-危险的活动,以减轻使用低盐度聚合物的任何潜在的负面影响,在粘土溶胀,聚合物剪切敏感度,混合和吸附。本文得出结论,低盐度聚合物洪水可以通过降低聚合物体积和/或增加的溢油来显着改善现有和预期的聚合物泛滥项目。低盐度聚合物洪水提供了在高盐度和高温储层中施加聚合物洪水的机会,其中具有生产或地层水的聚合物泛滥将是技术上不可行的或不经济。

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