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Investigation and Optimization of Deep Eutectic Solvent in Enhanced Oil Recovery Using Numerical Simulation

机译:数控仿真研究深红色溶剂的研究与优化

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In recent years,chemical enhanced oil recovery(EOR)application for heavy oil fields has been limited by low oil prices.The use of chemicals,though proven to be effective,can be toxic,expensive,and/or non-biodegradable.Deep Eutectic Solvents(DES)are potentially a much cheaper,greener alternative to conventional surfactants.However,there are very limited studies on the DES application.This study focused on numerical modeling of the effectiveness of a specific DES(Choline Chloride:Glycerol),in improving oil recovery and evaluating the parameters affecting the DES behavior.Data was gathered based on a literature review of the various but limited studies available and used to construct a black oil numerical model representing a heavy core-flooding experiment.The model was calibrated to some of the available published data.The study then used this model to examine different scenarios by comparing the performance of conventional water flooding using formation brine,with the performance of DES injection(after an initial period of brine flooding).The simulations were repeated at multiple temperatures and concentrations.Simulation results tally with the hypothesis and published data which is in favor of oil recovery enhancement with DES injection.In brine flooding cases,the oil recovery factor was in the range of 36-39%,with the high end occurring at a higher temperature.Increasing the DES concentration reduces the interfacial tension(IFT)which further improves oil recovery with the assistance of wettability alteration.Injected DES alters the rock wettability from oil-wet to water-wet thus improving the oil mobility.It was also observed that the oil recovery factor increases significantly with the increase of temperature as this reduces the oil viscosity and in turn,the mobility ratio,given the same formation properties.The highest recovery factor(60-62%)was achieved at the maximum injected concentration although this may not be practical in field application.Based on this,DES performance can be successfully applied as a substitute for current surfactant flooding methods in light of its low-cost,'greener'nature as well as performance as a chemical EOR agent.
机译:近年来,化学增强的石油田层储存(EOR)申请重油田的应用受到低油价的限制。使用化学品,虽然被证明是有效的,可以是有毒,昂贵和/或非生物降解的。溶剂(DES)可能是常规表面活性剂的更便宜的更便宜。但是,在DES应用中有非常有限的研究。本研究侧重于特定DES(氯化胆碱:甘油)的有效性的数值模拟,改善基于各种但有限研究的文献综述,采集了影响和评估影响DES行为的参数。用于构建代表重型核心泛滥实验的黑色石油数值模型。模型校准了一些可用发布的数据。然后,研究使用该模型来检查不同的情景,通过使用形成盐水的常规喷水的性能进行比较,具有des的性能注射(在盐水洪水的初始时期之后)。在多个温度和浓度下重复模拟。将结果与假设和公布的数据进行了分析,这有助于利用DES注入的石油回收增强。在盐水洪水案件中,漏油因子在36-39%的范围内,高端发生在更高的温度下。在润湿性改变的帮助下,降低进一步改善互联的界面张力(IFT)的界面张力。喷射DES改变了岩石润湿性从油湿到水湿,从而改善油状物。还观察到,随着温度的增加,由于这降低了油粘度,并且又为相同的形成性能,迁移率随温度而显着增加。最高恢复因子(60-62%)在最大注入浓度下实现,尽管这可能在现场应用中可能并不实用。基于此,DE鉴于其低成本,“格林更环保”以及作为化学EOR代理的性能,可以成功地应用于当前表面活性剂洪水方法的替代品。

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