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Value Added Course on Principles of 3-D & 4-D SEISMIC Interpretation and Applications in Reservoir Characterization and Modelling by Dept of PE on 25.04.17

Department of Petroleum Engineering conducted a value added course for II & III year students on 25.04.2017. The entire event is given as a gist of important happenings.

Students were organized and given the introduction regarding SEISMIC analysis as per the itinerary by the trainer Dr.J.Vignesh. With the knowledge gathered in the introduction session.

Students were given instructions about the software used for seismic interpretation. Students had a very useful practical session where they used the real time seismic data taken from the field during resistivity analysis. Their interaction with the trainers with practical doubts gave them an opportunity to learn and grow themselves.

 In this regard we thank our institution for permitting to install the software (original version) for students use. Data interpretation was really useful to students where they came to know the resistance signals obtained from diversified subsurface barriers.  The location being rich in organic matters gave the students an intense contour mapping about the subsurface. Students had the advantage of using original software in their laptops for future studies. The session winded up after the students got thorough knowledge about the seismic interpretation.

 Course Outcomes are:

Upon completion of this course, participants should be able to:

  • Know what the most essential 3D acquisition parameters are that intervene in the interpretation. Recognize acquisition artifacts. Influence the design of a new 3D.
  • Detect the defaults or lacks in a processing sequence; propose solutions. Be alert of the interpreter’s role during the processing, especially at PSDM stage.
  • Tie a 3D seismic volume to well, by using the well velocity data through seismic synthetic generation, VSP analysis, inversion and modeling process. Make the right choice of velocities.
  • Use effectively all other means of seismic calibration including geological data and non-seismic geophysical methods.

Pick horizons and faults confidently, using vertical and horizontal slices of the most appropriate 3D volume depending on interpretation objectives. Avoid interpretation pitfalls. Integrate key geological concepts in the interpretation process.

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