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Residual gas saturation revisited

机译:再探残余气体饱和度

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The detemination of the true residual gas saturation in gas reservoirs is addressed in this paper. It is customarily assumed that when a gas reservoir is overlaying an aquifer, water will imbibe into the gas-saturated zone with the onset of gas production. The process of gas displacement by water will be forced imbibition in areas of high drawdown and spontaneous imbibition in the areas of low drawdown. It is further assumed that in the bulk f the reservoir spontaneous imbibition will prevail and that the reservoir is water-wet. A final assumption is that the gas behaves as an incompressible fluid. All these assumptions are challenged in this paper. The topics of imbibition and wetting phase film flow are reviewed along with a brief sumary of the work on the determination of residual gas saturation to date. Furthermore, a series of experiments are presented whereby it is demonstrated that the residual gas saturation obtained by a short imbibition test is not necessarily the correct residual gas saturation. Imbibition tests by different methods yield very different results, while saturation history and core cleaning also seem to have a strong effect on the determination of residual gas saturation. In some cases, it was found that the residual gas by spontaneous imbibition was unreasonably high. This was attributed to weak wetting conditions of the core (no water "pull" by imbibition). It is expected that this work will shed some new light in an old but not so well understood topic.
机译:本文讨论了气藏中真实残余气体饱和度的确定问题。通常假定,当储气层覆盖含水层时,随着产气的开始,水将吸收到饱和气体区中。在水位高的地区,水驱气的过程将被强制吸收,在水位低的地区,天然气将被自发吸收。进一步假设在大部分情况下,储层会自吸,而储层是水润湿的。最后的假设是气体表现为不可压缩的流体。所有这些假设在本文中都受到挑战。回顾了吸收和润湿相膜流动的主题,以及迄今为止确定残留气体饱和度的工作的简要概述。此外,提出了一系列实验,从而证明了通过短吸收试验获得的残余气体饱和度不一定是正确的残余气体饱和度。用不同方法进行的吸着试验得出的结果大不相同,而饱和历史和岩心清洁似乎也对残留气体饱和度的测定产生很大影响。在某些情况下,发现自发吸收的残留气体过高。这归因于芯部的润湿条件较弱(没有因吸水而“拉水”)。预期这项工作将为一个古老但不太了解的话题提供一些新的启示。

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