Petrel Tutorial Best
Create a new framework and validate your fault connections using the QC manager.
Transfer fine-scale static models to a coarser simulation grid. Define Fluid Properties: Input PVT data.
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Import deviation surveys using MD (Measured Depth), Inclination, and Azimuth formats.
Rename each fault and assign distinct colors to keep track of structural trends. Horizon Interpretation petrel tutorial
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Familiarizing yourself with the Petrel interface is essential. The main areas are the (your data library), the Processes Pane (your toolbox for analyses), and the dedicated 2D/3D Visualization Window (where your models come to life). Petrel’s power lies in its integrated workflows, seamlessly connecting seismic interpretation, geology, and reservoir engineering.
A model is the starting point for most reservoir simulations. The property model and structural grid can be exported to a simulator like Eclipse or INTERSECT . Petrel also has direct interfaces for building simulation cases. You can add wells and define how they are controlled, including well control rules and thermal boundary conditions for specialized scenarios like thermal simulation.
Match the CRS exactly with your incoming seismic survey headers to prevent spatial distortions. Defining Project Units and Scale Choose your unit standard ( or Imperial ). Create a new framework and validate your fault
The final step of the static modeling workflow is quantifying the volume of hydrocarbons in place and prepping the model for dynamic fluid flow simulations. Running Volumetrics Open the process tool.
Faults act as structural traps or fluid barriers. Mapping them is the first step in structural modeling. Go to the process tab. Select the Fault Interpretation tool.
Property modeling fills the empty 3D grid cells with continuous petrophysical variables and discrete geological facies. Facies Modeling
Where structural grids, properties, and simulation cases reside. This public link is valid for 7 days
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Use standard .las or .lis files. Assign global well log logs (e.g., GR for Gamma Ray) during import.
: Open a "3D Window" to visualize imported data and perform Quality Control (QC) to check for spatial inconsistencies. 3. Seismic Interpretation Workflow