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Geochemical Modeling to Evaluate the Performance of Polymer Flooding in a Highly Sour Sandstone Heavy Oil Reservoir

机译:地球化学建模评价高酸性砂岩重油储层中聚合物洪水性能

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The Umm Niqa Lower Fars(Heavy Oil Field)oil reservoir has very favorable properties of high permeability,low temperature,and moderate oil viscosity for polymer flooding and work is progressing towards implementing a polymer pilot in this target reservoir.Nonetheless,Heavy Oil Field contains high salinity water,it is shallow with concerns about injectivity limitations,and high concentrations of H2S(up to 5 mol% in reservoir fluids)which may adversely impact the effectiveness of the injected polymer solutions. A comprehensive laboratory and numerical modeling was initiated to address some of these issues.One potential concern is the degradation of polymer in the co-presence of H2S and possible oxygen introduced with polymer solution injection.This study is aimed at evaluating the impact of H2S on polymer performance in the Heavy Oil Field reservoir via geochemical simulations based on laboratory data. Previously performed polymer rheology and transport experiments were history matched and model parameters were developed for subsequent simulations.Transport behavior of both HPAM type and biopolymers was modeled incorporating two new features of viscous fingering and filtration models. This was then followed by a geochemical simulation study to assess and potentially de-risk the presence of H2S near the wellbore assuming that all oxygen in the injection water(if any)is rapidly consumed by reservoir rock minerals and oil. The parameters developed for the rheology of the polymers were very robust and represented the effects of salinity and polymer shear thinning over a wide range of polymer concentrations for each polymer.These parameters were then used to conduct simulation studies on waterflooding and polymer flooding in the presence of near wellbore H2S.Sensitivity simulations to relative permeability/wettability,oil viscosity, polymer concentration were also conducted to identify the impact on injectivity of polymer solution.The use of the newly added viscous fingering and filtration models was necessary in some cases to correctly model the transport behavior of unstable displacements.Geochemical evaluation showed that injecting H2Sfree water over a period of ~3 months can significantly reduce H2S concentration in the near-wellbore region (~30 ft)due to stripping from the oil phase.This is advantageous for the injected polymer because even if small oxygen concentration is co-injected with the water,there would be no H2S present to cause polymer degradation. This study presents a practical approach to de-risk the deployment of polymer flooding in a highly sour shallow sandstone heavy oil reservoir.The findings of this study will be evaluated in a one-spot EOR pilot soon.
机译:UMM Niqa较低的FARS(重油场)储油液具有非常有利的高渗透性,低温和适度的高级油粘度,用于聚合物泛滥的高级油粘度,并且工作正在进行在该目标储层中实施聚合物飞行员。因此,重油场含有重油场高盐水,浅,对注射局部的担忧,高浓度的H 2 S(高达5mol%的储存流体),这可能对注射的聚合物溶液的有效性产生不利影响。启动了全面的实验室和数值建模,以解决这些问题的一些问题。能潜在的担忧是在H 2 S的共同存在下降解聚合物和具有聚合物溶液注射的可能的氧气。本研究旨在评估H2S对H2S的影响基于实验室数据的地球化学模拟,重油场储层中的聚合物性能。以前进行的聚合物流变学和运输实验是历史匹配,用于随后模拟开发了模型参数。HPAM型和生物聚合物的特征掺入了粘性指法和过滤模型的两个新特征。然后将其接着是地球化学模拟研究,以评估和潜在地破坏井筒附近的H2S存在的存在,假设注射水(如果有的话)所有氧气被储层岩石矿物和油迅速消耗。为聚合物的流变学开发的参数非常稳健,并且代表盐度和聚合物剪切稀疏在各聚合物的各种聚合物浓度上稀释。然后使用参数来进行在存在下对水上的仿真和聚合物泛滥的模拟研究在接近Wellbore H2S中的敏感性模拟到相对渗透性/润湿性,油粘度,聚合物浓度也进行了鉴定了对聚合物溶液的注射的影响。在某些情况下,使用新添加的粘性指法和过滤模型是必要的不稳定位移的传输行为。地球化学评价显示,在〜3个月内注射H2SFREE水,由于从油相剥离,在近井眼区域(〜30英尺)中可以显着降低H2S浓度。这对注射聚合物,因为即使小氧浓度与水共注出,T这里将不是存在引起聚合物降解的H 2 S。本研究提出了一种实用的方法,使高度酸性浅砂岩重油储层中的聚合物洪水部署的实践方法。本研究的结果将在一分钟EOR飞行员中评估。

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