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首页> 外文期刊>Journal of Petroleum Science & Engineering >Effect of CO 2 and crude oil type on the dynamic interfacial tension of crude oil/carbonated water at different operational conditions
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Effect of CO 2 and crude oil type on the dynamic interfacial tension of crude oil/carbonated water at different operational conditions

机译:CO 2 和原油类型对不同操作条件下原油/碳酸水的动态界面张力的原油

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Concerns about climate change have persuaded the researchers to examine CO2injection in the form of carbonated water (CW) into oil reservoir as a safe and effective CO2storage and enhanced oil recovery process. Although interfacial tension (IFT) between crude oil and injected fluid has a vital role on the displacement of fluids in porous media, the effect of CO2and crude oil type on the dynamic IFT of crude oil under different operational conditions is not well understood. Accordingly, this study was carried out to assess the effects of temperature, pressure, crude oil type and CO2on the dynamic IFT of crude oil/CW. To achieve this goal, two types of crude oil were provided from southern Iranian oil reservoirs and dynamic IFTs with CW were measured in a wide range of temperatures and pressures (i.e. temperature range of 30–80?°C and pressure range of 500–4000 psi); the obtained results were compared with the system without CO2. In addition, the adsorption time of carbonated aqueous phase/crude oil, obtained based on the mono exponential decay model, was also compared with unadulterated water/crude oil system. The outcome of this study showed that crude oil type has the most significant effect on the IFT of crude oil/CW compared to pressure, temperature and CO2content. In more details, the IFT of crude oil/CW can be affected by the amount and type of acidic/basic components in the crude oil as well as pH of the aqueous solution. Besides, the obtained results revealed that the effect of temperature was more considerable on the IFT of the heavy crude oil compared with the light crude oil in both studied aqueous solutions (i.e. unadulterated water and CW). Although the inversion phase temperature was obtained for unadulterated water/studied crude oils at all studied pressures, this phenomenon was not observed for crude oil/CW at elevated pressure, due to the high amount of CO2at this condition.
机译:对气候变化的担忧说服了研究人员以碳酸水(CW)的形式检查碳酸盐储存器的CO 2注射,作为安全有效的CO2Storage和增强的采油过程。虽然原油和注射流体之间的界面张力(IFT)对多孔介质中流体的位移具有重要作用,但CO2和原油类型在不同操作条件下的原油动态IFT上的作用也不受欢迎。因此,进行了该研究以评估温度,压力,原油类型和CO2ON的作用,即原油/ CW的动态IFT。为实现这一目标,从伊朗南部的伊朗储油器提供两种原油,在各种温度和压力范围内测量CW的动态IFTS(即30-80Ω°C的温度范围,压力范围为500-4000 PSI);将得到的结果与没有CO2的系统进行比较。此外,还与纯水/原油系统相比,基于单次指数衰减模型获得的碳酸水相/原油的吸附时间。该研究的结果表明,与压力,温度和CO2Content相比,原油类型对原油/ CW的IFT具有最显着的影响。更详细地,原油/ CW的IFT可以受原油中酸性/碱性组分的量和类型的影响以及水溶液的pH的影响。此外,所获得的结果表明,与研究水溶液(即纯水和CW)中的光原油相比,在重质原油的IFT中,温度的影响更为广泛。尽管在所有研究的压力中得到纯水/研究原油/研究原油的反转相温度,但由于该条件的高量为升高的压力,未观察到该现象。

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