A novel numerical simulation of CO2 immiscible flooding coupled with viscosity and starting pressure gradient modeling in ultra-low permeability reservoir

IF 1.8 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Frontiers of Earth Science Pub Date : 2023-11-18 DOI:10.1007/s11707-023-0085-y
Jie Chi, Binshan Ju, Jiabei Wang, Xing Zhang, Wenbin Chen, Mengfei Zhang
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Abstract

CO2 immiscible flooding is an environmentally-friendly and effective method to enhance oil recovery in ultra-low permeability reservoirs. A mathematical model of CO2 immiscible flooding was developed, considering the variation in crude oil viscosity and starting pressure gradient in ultra-low permeability reservoirs based on the non-Darcy percolation theory. The mathematical model and numerical simulator were developed in the C++ language to simulate the effects of fluid viscosity, starting pressure gradient, and other physical parameters on the distribution of the oil pressure field, oil saturation field, gas saturation field, oil viscosity field, and oil production. The results showed that the formation pressure and pressure propagation velocity in CO2 immiscible flooding were lower than the findings without considering the starting pressure gradient. The formation oil content saturation and the crude oil formation viscosity were higher after the consideration of the starting pressure gradient. The viscosity of crude oil considering the initiation pressure gradient during the formation was higher than that without this gradient, but the yield was lower than that condition. Our novel mathematical models helped the characterization of seepage resistance, revealed the influence of fluid property changes on seepage, improved the mathematical model of oil seepage in immiscible flooding processes, and guided the improvement of crude oil recovery in immiscible flooding processes.

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超低渗透油藏黏度与启动压力梯度耦合CO2非混相驱数值模拟
二氧化碳非混相驱是超低渗透油藏提高采收率的一种环保、有效的方法。基于非达西渗流理论,考虑超低渗透油藏原油粘度和启动压力梯度的变化,建立了CO2非混相驱数学模型。利用c++语言建立数学模型和数值模拟器,模拟流体粘度、启动压力梯度等物理参数对油压场、含油饱和度场、含油饱和度场、含油粘度场及产油量分布的影响。结果表明,CO2非混相驱的地层压力和压力传播速度比不考虑启动压力梯度时的结果要低。考虑启动压力梯度后,地层含油量饱和度和原油地层粘度较高。考虑地层起始压力梯度的原油粘度高于不考虑起始压力梯度的原油粘度,但原油产量低于不考虑起始压力梯度的原油粘度。该数学模型有助于表征渗流阻力,揭示流体性质变化对渗流的影响,完善了非混相驱油渗流数学模型,指导了非混相驱油采收率的提高。
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来源期刊
Frontiers of Earth Science
Frontiers of Earth Science GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
3.50
自引率
5.00%
发文量
627
期刊介绍: Frontiers of Earth Science publishes original, peer-reviewed, theoretical and experimental frontier research papers as well as significant review articles of more general interest to earth scientists. The journal features articles dealing with observations, patterns, processes, and modeling of both innerspheres (including deep crust, mantle, and core) and outerspheres (including atmosphere, hydrosphere, and biosphere) of the earth. Its aim is to promote communication and share knowledge among the international earth science communities
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