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Chemical EOR in High Salinity-High Temperature Reservoir - Experimental Coreflooding Tests and Numerical Simulation

机译:高盐度高温储层中的化学EOR - 实验性核心试验和数值模拟

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Recent developments in chemical EOR technologies make now possible to operate in severe environments, characterized by high-temperature conditions and by high salinity and hardness of reservoir brine. A feasibility study was conducted on a field operated by Eni, in order to design a surfactant injection under these challenging conditions. Laboratory studies and simulations were performed to evaluate the potentiality of the technique to increase the oil recovery. Two surfactant formulations presenting good phase behaviour and conferring low interfacial tension between brine and reservoir oil were tested. The dynamic performance of the chemicals was screened with a series of coreflooding tests, carried out using Berea sandstone. Sea water injection was followed by the chemical flooding, so that the additional recovery factor was evaluated. Surfactant adsorption was then measured to select the most suitable formulation. Moreover, core experiments were history matched through numerical simulation to validate the model and obtain scaling parameters of the chemical process for future forecast previsions of surfactant flood benefits at sector scale.
机译:最近的化学EOR技术的发展现在可以在严苛的环境中运行,其特征在于高温条件和高盐度和储层盐水的硬度。在由eni操作的领域进行可行性研究,以便在这些挑战条件下设计表面活性剂注射。进行实验室研究和模拟以评估技术潜力以增加溢油。测试了呈现良好相行为和赋予盐水和储存器油之间的低界面张力的两种表面活性剂配方。使用Berea Sandstone进行了一系列CorePlood测试的化学物质的动态性能。海水注射液相投,从而进行了化学洪水,从而评估了额外的恢复因子。然后测量表面活性剂吸附以选择最合适的制剂。此外,核心实验是通过数值模拟匹配的历史,以验证模型,并获得化学过程的缩放参数,以便在扇区规模处的表面活性剂洪水益处的未来预测预测。

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