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SVM Functionality

Control from a single environment

From seismic interpretation through prestack or velocity picking, structural modeling, solid modeling, property population, tomography, domain conversion, and forward seismic modeling, to basic calibration; all the tools required by the imaging workflows have been redesigned to be controlled from a single environment and optimized to work together.

Access, visualize, and manipulate data

From pre- and poststack seismic data (e.g., dip field or coherency volumes) in time or in depth, to structural models, velocity models, tomographic updates (e.g., residual moveout volumes or illumination volumes), rays and wavefronts, all the data are accessed as geographical objects, and visualized and manipulated from the same graphical environment.

Access to Omega software

The SVM suite of interactive components supports several defined workflows across Omega and Petrel software. Access to Omega software enables computationally intensive batch processes to be performed.

3D visualization and interactivity

Use the Petrel 3D window to display all geological and geophysical objects together and navigate synchronously. You can visualize multiazimuthal prestack gathers (5D data) or any other multidimensional data in their true graphical position. This includes large datasets such as prestack gathers. You can also corender pre- and poststack seismic together with properties and other attributes.

Geophysical and geological consistency

SVM combines advanced interpretation, modeling, inversion, and processing algorithms with geological rules to build both simple and complex structural models and to populate properties into its layers. Integration of new marching cubes and complex clamshell methods provide improved complex geobody modeling. The geological 3D model integrates a range of data measurements to produce a unified or shared earth model.

Most accurate imaging solutions

SVM enables workflow designs that incorporate automation and model updates through to final imaging. Build and save modeling workflows according to subsurface complexity and input data to deliver the most accurate imaging solutions with improved turnaround time.

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