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Compositional simulation of hydrocarbon recovery from oil shale reservoirs with diverse initial saturations of fluid phases by various thermal processes

机译:通过不同的热过程从油页岩储层中开采出具有不同初始液相饱和度的烃的组成模拟

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We have studied the hydrocarbon production from oil shale reservoirs filled with diverse initial saturations of fluid phases by implementing numerical simulations of various thermal in-situ upgrading processes. We use our in-house fully functional, fully implicit, and non-isothermal simulator, which describes the in-situ upgrading processes and hydrocarbon recovery by multiphase-multicomponent systems. We have conducted two sets of simulation casesfive-spot well pattern problems and Shell In-situ Conversion Process (ICP) problems. In the five-spot well pattern problems, we have analyzed the effects of initial fluid phase that fills the single-phase reservoir and thermal processes by four caseselectrical heating in the single-phase-aqueous reservoir, electrical heating in the single-phase-gaseous reservoir, hot water injection in the single-phase-aqueous reservoir, and hot CO2 injection in the single-phase-gaseous reservoir. In the ICP problems, we have analyzed the effects of initial saturations of fluid phases that fill two-phase-aqueous-and-gaseous reservoir by three casesinitial aqueous phase saturations of 0.16, 0.44, and 0.72. Through the simulation cases, system response and production behavior including temperature profile, kerogen fraction profile, evolution of effective porosity and absolute permeability, phase production, and product selectivity are analyzed. In the five-spot well pattern problems, it is found that the hot water injection in the aqueous phase reservoir shows the highest total hydrocarbon production, but also shows the highest water-oil-mass-ratio. Productions of phases and components show very different behavior in the cases of electrical heating in the aqueous phase reservoir and the gaseous phase reservoir. In the ICP problems, it is found that the speed of kerogen decomposition is almost identical in the cases, but the production behavior of phases and components is very different. It is found that more liquid organic phase has been produced in the case with the higher initial saturation of aqueous phase by the less production of gaseous phase.
机译:我们通过对各种热原位改造过程进行数值模拟,研究了充满不同流体初始饱和度的油页岩油藏的油气生产。我们使用我们的内部全功能,完全隐式和非等温模拟器,该模拟器描述了通过多相多组分系统进行的现场升级过程和油气采收。我们进行了两套模拟案例:五点井网问题和壳原位转换过程(ICP)问题。在五点井网模式问题中,我们通过四种情况分析了单相水库中的电加热,单相气态中的电加热对四种情况下填充单相油藏的初始流体相和热过程的影响。储层,在单相水库中注入热水,在单相气库中注入二氧化碳。在ICP问题中,我们分析了在三种情况下初始水相饱和度分别为0.16、0.44和0.72的情况下,填充两相水和气态储层的流体初始饱和度的影响。通过模拟案例,分析了系统响应和生产行为,包括温度曲线,干酪根馏分曲线,有效孔隙率和绝对渗透率的演变,相产生和产物选择性。在五点井网模式问题中,发现在水相油藏中注入热水显示出最高的总烃产量,但同时也显示出最高的水油质量比。在水相储层和气相储层中进行电加热时,相和组分的产生表现出非常不同的行为。在ICP问题中,发现在这种情况下,干酪根的分解速度几乎相同,但是相和组分的生产行为却大不相同。已经发现,在水相的初始饱和度较高的情况下,由于气相的生成量较少,所以产生了更多的液态有机相。

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