The structural model forms the 3D skeleton of your reservoir model. It consists of three interconnected steps: Fault Modeling, Pillar Gridding, and Making Horizons.
Transforming interpretations into a watertight geometrical grid requires executing structural modeling steps in a chronological order. 1. Fault Modeling
Transfer fine-scale static models to a coarser simulation grid. Define Fluid Properties: Input PVT data.
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Run the tool to build vertical, inclined, or curved structural pillars along the modeled fault lines.
If your volume seems too high (e.g., 10 billion barrels), your area or porosity is overestimated. If too low, your oil-water contact is too high.
Petrel acts as a central hub for various data types. All imported data is organized in the pane (usually found in the left-hand explorer). The structural model forms the 3D skeleton of
Map your columns accurately in the import dialog: Well Name, X coordinate, Y coordinate, Kelly Bushing (KB) elevation, and Total Depth (TD). Import Well Deviations (Trajectory)
Imported via LAS or ASCII files. These provide the "truth" at specific points in the ground.
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A model is only as good as the data feeding it. Petrel supports a vast array of formats.
Because well logs sample data at half-foot intervals, you must average (upscale) these values to match the coarser vertical grid cells of your 3D model. Property Upscaling Steps Open the process in the Process Diagram.
Once completed, load the results back into the to plot simulated curves against historical production data for history matching adjustments. 9. Best Practices and Troubleshooting Common Errors