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Sensitivity analysis of geological rule-based subsurface model parameters on fluid flow
- Jo, Honggeun;
- Pyrcz, Michael J.;
- Laugier, Fabien;
- Sullivan, Morgan
WEB OF SCIENCE
2SCOPUS
2초록
The rule-based modeling method applies stratigraphic rules that simulate the fundamental geological processes to generate nu-merical subsurface models. Even though rule-based models rely upon a few simple and intuitive rules, they can create compli-cated and realistic reservoir heterogeneity, continuity, and spatial organization. The application of this modeling approach has now been applied to a variety of depositional settings, such as the deepwater turbidites, efficiently capturing the salient geolog-ical spatial features of compensational stacked lobes. Questions remain as to how the integration of geological rules and related parameters affect the forecasting of fluid flow, including oil production.A large experiment was conducted using a rule-based model for a deepwater lobe system controlled by three key geological parameters: (1) the vertical and lateral stacking of geobodies, described as a compensation index; (2) lobe geometry/size; and (3) permeability heterogeneity. Regression analysis and compu-tational physics-based fluid flow simulation are applied to exam-ine reservoir production sensitivity to these three geological input parameters. Over the early production stage, the perme-ability heterogeneity within depositional elements is the most influential reservoir parameter. However, over time, lobe geome-try and compensation index have a more significant impact on production. This result suggests that the importance of geological features to the flow behavior changes over time as longer-term production is influenced by a larger rock volume and compound-ing heterogeneity. Moreover, understanding the impact of com-pensational stacking and deepwater lobe geometry is essential for performance forecasting, uncertainty analysis, and history match-ing. The importance of these key geologic parameters further sup-ports the necessity of outcrop characterization, high-resolution seismic interpretation and flume experiments, and the use of res-ervoir models, such as stratigraphic rule-based models that repro-duce these critical stratigraphic features.
키워드
- 제목
- Sensitivity analysis of geological rule-based subsurface model parameters on fluid flow
- 저자
- Jo, Honggeun; Pyrcz, Michael J.; Laugier, Fabien; Sullivan, Morgan
- 발행일
- 2023-06
- 유형
- Article
- 저널명
- AAPG Bulletin
- 권
- 107
- 호
- 6
- 페이지
- 887 ~ 906