Reservoir Implications of Measured Thermodynamic Equilibrium of Crude Oil Components: Gases, Liquids, the Solid Asphaltenes, and Biomarkers

Author:

Mullins Oliver C.1,Johansen Yngve Bolstad2,Achourov Vladislav1,Chen Qing1,Cañas Jesus Albert1,Chen Li1,Pomerantz Andrew E.1,Forsythe Julia C.1,Betancourt Soraya S.1,Bayestehparvin Bita1

Affiliation:

1. Schlumberger

2. AkerBP

Abstract

Abstract The process of compositional equilibration of reservoir crude oil requires excellent reservoir connectivity. For example, the measured of asphaltene gradients for indications of connectivity is now commonplace. In addition, equilibrated fluids imply various other important fluid and reservoir properties. However, some measurements of distinguishing equilibration from disequilibrium have been ambiguous. Here, we provide measurement protocols which provide robust determination of equilibrium within a framework of reservoir fluid geodynamics. Thermodynamic modeling of measured asphaltene gradients vertically and laterally with considerations of solution gas provides a robust determination of equilibrium. In addition, two-dimensional gas chromatography with its high-resolution compositional evaluation especially within a geochemical context can corroborate conclusions from asphaltene gradient analysis. Outlier locations in the reservoir can often be found and aid considerably in delineating the important reservoir fluid geodynamic processes operative in the reservoir and validating the assessments regarding equilibrium. The evolution of lateral equilibration is shown in a reservoir with known initial (at time of charge) and present-day lateral gradients. Modeling clarifies the convection which has occurred over geologic time to minimize these lateral gradients. Different processes of mass transport in reservoirs are compared. Equilibration processes and corresponding asphaltene gradient measurements are analyzed for differing geologic times including a very young (Pleistocene and Pliocene) and very old (Cretaceous) reservoir charges in different reservoirs. The important role of convection is shown, with its critical requirement of a density inversion.

Publisher

SPE

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Reservoir simulation of charge history over geologic time matches many measurements of connectivity in stacked turbidite reservoirs;Third International Meeting for Applied Geoscience & Energy Expanded Abstracts;2023-12-14

2. A Novel Reservoir Forming Mechanism with Wax-Out Cryo Trapping;Day 3 Wed, February 23, 2022;2022-02-21

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