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An Experimental Investigation of Interactions Between Supercritical CO2, Aspheltenic Crude Oil, and Reservoir Brine in Carbonate Cores

机译:碳酸盐岩心中超临界CO2,沥青质原油和储层卤水相互作用的实验研究

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Asphaltene precipitation and rock dissolution can significantly hinder the success of carbon dioxide flooding of asphaltenic crude in carbonate formation. It is essential during CO2 flooding when both processes exist to study separately the effect of each phenomenon on the flooding process. Core flooding experiments under high pressure and temperature conditions (250 ℉, and 4000 psia) were conducted to evaluate each phenomenon separately. Actual cores representing different areas of carbonate oil field and actual fluids (crude oil and brine) were used to evaluate the interaction between CO2, rock and fluids. Asphaltene content of the produced crude oil, water and mineralogical rock analysis, and pores micro-photos were performed to evaluate the effect of SC CO2 flood on the petrophysical characteristics of the limestone cores. Results indicate that the amount of damage depends on the fabric of the rocks, salinity of the brine, core permeability and damage is due to interaction between CO2 and rock. Fluids assessment should be conducted to different areas of the field.
机译:沥青质的沉淀和岩石溶解会严重阻碍碳酸盐岩地层中沥青质原油二氧化碳驱的成功。两个过程同时存在时,在CO2驱油过程中必须分别研究每种现象对驱油过程的影响,这一点至关重要。在高压和高温条件下(250℉和4000 psia)进行岩心驱油实验,以分别评估每种现象。代表碳酸盐油田不同区域的实际岩心和实际流体(原油和盐水)用于评估CO2,岩石和流体之间的相互作用。采出的原油中的沥青质含量,水和矿物岩石分析以及孔隙显微照片用于评估SC CO2驱替对石灰岩岩心的岩石物性的影响。结果表明,损害程度取决于岩石的结构,盐水的盐度,岩心渗透率和损害是由于二氧化碳与岩石之间的相互作用所致。应当对田间的不同区域进行流体评估。

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